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Articles

A literature review on the technologies of bonded hoses for marine applications

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Pages 2819-2850 | Received 02 Nov 2021, Accepted 06 Jan 2022, Published online: 12 Mar 2022

References

  • Abelanet, M. 2012. Installation of electrical heat trace flowline by reel lay. Presented on 22nd Feb 2012. Subsea 7 Presentation, UK. Available at: https://www.yumpu.com/en/document/view/26877695/mechanical-lined-pipe-installation-by-reel-lay-subsea-uk (Accessed on 2nd December, 2021).
  • Aboshio, A. 2014. Dynamic Study of Inflatable Offshore Barrier Structures under Impact and Environmental Loadings (Ph.D. thesis) Engineering Department, Lancaster University, United Kingdom.
  • Aboshio A, Green S, Ye J. 2014a. Dynamic response of Inflatable Offshore Fender Barrier Structures under Impact Loading. Paper 148, Proceedings of the Fourteenth International Conference on Civil, Structural and Environmental Engineering Computing, B.H.V. Topping and P. Iványi, (Editors), Civil-Comp Press, Stirlingshire, Scotland. https://doi.org/10.4203/ccp.102.148
  • Aboshio A, Green S, Ye J. 2014b. New constitutive model for anisotropic hyperelastic biased woven fibre reinforced composite. Plastics, Rubber and Composites, 43(7):225–34. https://doi.org/10.1179/1743289814Y.0000000097
  • Aboshio A, Green S, Ye J. 2015. Experimental investigation of the mechanical properties of neoprene coated nylon woven reinforced composites. Compos Struct. 120:386–393. doi:10.1016/j.compstruct.2014.10.015.
  • Aboshio A, Uche AO, Akagwu P, Ye J. 2021. Reliability-based design assessment of offshore inflatable barrier structures made of fibre-reinforced composites. Ocean Eng. 233(109016):109016. doi:10.1016/j.oceaneng.2021.109016.
  • Aboshio A, Ye J. 2016. Numerical study of the dynamic response of Inflatable Offshore Fender Barrier Structures using the Coupled Eulerian–Lagrangian discretization technique. Ocean Eng. 112:265–276. doi:10.1016/j.oceaneng.2015.12.020.
  • ABS. 2020. Rules for building and classing - single point moorings, American Bureau of Shipping. Available at: https://ww2.eagle.org/content/dam/eagle/rules-and-guides/current/offshore/8-single-point-moorings/spm-rules-july20.pdf
  • ABS. 2017). Rules for building and classing – subsea riser systems, American Bureau of Shipping. Available at: https://ww2.eagle.org/content/dam/eagle/rules-and-guides/current/offshore/123_guide_building_and_classing_subsea_riser_systems_2017/Riser_Guide_e-Mar18.pdf
  • Ahlstone A. 1973. Light weight marine riser pipe. Patent 3768842 A, USA, 30 October 1973.
  • Alfagomma. 2016. Industrial hose & fittings, Vimercate, Italy: Alphagomma SpA.
  • Ali A, Hosseini M, Sahari BB. 2010. A review of constitutive models for rubber-like materials. Am J Eng Appl Sci. 3(1):232–239. doi:10.3844/ajeassp.2010.232.239.
  • Ali MOA, Ja’e IA, Zhen Hwa MG. 2020. Effects of water depth, mooring line diameter and hydrodynamic coefficients on the behaviour of deepwater FPSOs. Ain Shams Eng J. 11(3):727–739. doi:10.1016/j.asej.2019.12.001.
  • Amaechi CV, Wang F, Hou X, Ye J. 2019a. Strength of submarine hoses in Chinese-lantern configuration from hydrodynamic loads on CALM buoy. Ocean Eng. 171:429–442. doi:10.1016/j.oceaneng.2018.11.010.
  • Amaechi CV, Ye J, Hou X, Wang F-C. 2019b. Sensitivity Studies on Offshore Submarine Hoses on CALM Buoy with Comparisons for Chinese-Lantern and Lazy-S Configuration OMAE2019-96755. 38th International Conference on Ocean, Offshore and Arctic Engineering, Glasgow, Scotland, June 9–14, 2019. OMAE2019-96755.
  • Amaechi CV, Ye J. 2017. A numerical modeling approach of composite risers for deep waters. ICCS20 20th International Conference on Composite Structures; 2017-09-04 | conference-paper; ISBN 9788893850414., Paris, France.
  • Amaechi CV, Gillett N, Odijie AC, Hou X, Ye J. 2019. Composite risers for deep waters using a numerical modelling approach. Compos Struct. 210:486–499. doi:10.1016/j.compstruct.2018.11.057.
  • Amaechi, CV, Gillett, N, Odijie, AC, Wang, F, Hou X, Ye J. 2019d Local and Global Design of Composite Risers on Truss SPAR Platform in Deep waters. In: MECHCOMP2019 5th International Conference on Mechanics of Composites, 2019-07-012019-07-04, Instituto Superior Técnico, Lisbon, Portugal. Available at: https://eprints.lancs.ac.uk/id/eprint/136431 (Accessed on 2nd December, 2021).
  • Amaechi CV, Gillet N, Ye J. 2022. Tailoring the local design of deep water composite risers to minimise structural weight. J. Compos. Sci. (under review)
  • Amaechi CV, Ye J. 2021a. Local tailored design of deep water composite risers subjected to burst, collapse and tension loads. Ocean Engineering 2022. Pages 1-28, https://doi.org/10.1016/j.oceaneng.2021.110196.
  • Amaechi CV, Ye J. 2021b. A review of state-of-the-art and meta-science analysis on composite risers for deep seas. Ocean Engineering 2021. (under review).
  • Amaechi CV, Ye J. 2021c. Review of composite marine risers for deep-water applications: design, development, and mechanics. Journal of Composite Science, 2021. (under review).
  • Amaechi CV, Chesterton C, Butler HO, Wang F, Ye J. 2021d. An overview on bonded marine hoses for sustainable fluid transfer and (Un)loading operations via floating offshore structures (FOS). J Mar Sci Eng. 9(11):1236. doi:10.3390/jmse9111236.
  • Amaechi CV, Chesterton C, Butler HO, Wang F, Ye J. 2021e. Review on the design and mechanics of bonded marine hoses for Catenary Anchor Leg Mooring (CALM) buoys. Ocean Eng. 242(110062):110062. doi:10.1016/j.oceaneng.2021.110062.
  • Amaechi CV, Wang F, Ye J. 2021f. Mathematical modelling of bonded marine hoses for single point mooring (SPM) systems, with Catenary Anchor Leg Mooring (CALM) buoy application—A review. J Mar Sci Eng. 9(11):1179. doi:10.3390/jmse9111179.
  • Amaechi CV, Wang F, Ye J. 2021g. Numerical assessment on the dynamic behaviour of submarine hoses attached to CALM buoy configured as Lazy-S under water waves. J Mar Sci Eng. 9(10):1130. doi:10.3390/jmse9101130.
  • Amaechi Chiemela Victor, Wang F, Ye J. 2021h. Investigation on hydrodynamic characteristics, wave–current interaction and sensitivity analysis of submarine hoses attached to a CALM buoy. J Mar Sci Eng. 10(1):120. doi:10.3390/jmse10010120.
  • Amaechi C Victor, Wang F, Ye J. 2022b. Numerical studies on CALM buoy motion responses and the effect of buoy geometry cum skirt dimensions with its hydrodynamic waves-current interactions. Ocean Eng. 244(110378):110378. doi:10.1016/j.oceaneng.2021.110378.
  • Amaechi CV, Chesterton C, Butler HO, Gu Z, Odijie AC, Wang F, Hou X, Ye J. 2021j. Finite element modelling on the mechanical behaviour of marine bonded composite hose (MBCH) under burst and collapse. J Mar Sci Eng. 10(2):151. doi:10.3390/jmse10020151.
  • Amaechi CV, Wang F, Ye J. 2021k. Understanding the fluid–structure interaction from wave diffraction forces on CALM buoys: numerical and analytical solutions. Ships Offshore Structures.:1–29. doi:10.1080/17445302.2021.2005361.
  • Amaechi CV, Wang F, Ye J. 2021l. Experimental study on motion characterization of CALM buoy hose system under water waves. J. Mar. Sci. Eng. 2021, 10(2):204. doi:10.3390/jmse10020204.
  • Amaechi CV, Wang F, Ye J. 2021m. Numerical assessment of marine hose load response during reeling and free-hanging operations under ocean waves. Marine Structures 2021. (under review).
  • Amaechi CV, Wang, F, Ye J. 2021n. An investigation on the vortex effect of a CALM Buoy under Water Waves using Computational Fluid Dynamics (CFD). Inventions 2022, under review.
  • Amaechi CV, Odijie AC, Wang F, Ye J. 2021o. Numerical investigation on mooring line configurations of a Paired Column Semisubmersible for its global performance in deep water condition. Ocean Engineering. 2022. https://doi.org/10.1016/j.oceaneng.2022.110572
  • Amaechi CV, Adefuye EF, Oyetunji AK, Ja’e IA, Adelusi I, Odijie AC, Wang F. 2021p. Numerical study on plastic strain distributions and mechanical behaviour of a tube under bending. Inventions. 7(1):9. doi:10.3390/inventions7010009.
  • Amaechi CV. 2022. Novel design, hydrodynamics and mechanics of marine hoses in oil/gas applications. PhD Thesis. Engineering Department, Lancaster University, Lancaster, UK.
  • Ambrose 1979. Flexible hose lines. Patent 4153079, USA, 1979-05-08.
  • Anderson JJ, Nance DA, Mickelson CS. 1998. Composite cylinder termination formed using snap ring. Patent 5813467 A, USA, 29 September 1998.
  • Andrick, et al. 1997. Symmetrical gasket for a pipe joint. Patent 5687976, USA, 1997-11-18.
  • ANSYS. 2016a. ANSYS Aqwa Theory Manual, Release 17.2, Canonsburg, USA: ANSYS Inc.
  • ANSYS. 2016b. ANSYS Aqwa User’s Manual, Release 17.2, Canonsburg, USA: ANSYS Inc.
  • Antal, et al. 2001. High pressure flexible hose structure and method of manufacture. Patent 6315002, USA, 2001-11-13
  • Antal S, Nagy T, Boros A. 2003. Improvement of bonded flexible pipes acc. to new API Standard 17K. In: Offshore Technology Conference, 5-8 May, Houston, Texas, USA. Paper No. OTC-15167-MS. https://doi.org/10.4043/15167-MS
  • Antal S, Imre D, Gyula B, Katona T. 2012. Finite element analysis of seawater intake hoses. Continental ContiTech Presentation. SIMDAY 2012, Budapest. Available at: https://docplayer.net/3495153-Finite-element-analysis-of-seawater-intake-hoses.html Retrieved on 22nd January, 2022.
  • Antal S, Gelencser S, Nagy T, Seregely Z. 1998. Problems of improving flexible pipes (Hoses) designed for the delivery of high pressure gas and gaseous oil. Kautschuk und Gummi Kunststoffe. 51(1):51–57. Available at: https://www.kgk-rubberpoint.de/en/hefte/ Retrieved on 22nd January, 2022.
  • Antal S, Gelencser S, Guendisch G, Penzias T, Palotas L, Gyoengyoesi G. 1985. Flexible technical hose mountable from several parts but deforming slightly under the effect of internal overpressure. Patent HU197422B, Hungary
  • Antal S, Garai G, Gelencser S, Goergenyi P, Koszo F, Laszlo G. 1988. Equipment for the manufacture of mainly large-diameter flexible hoses having spiralled reinforcement. Published May 3, 1988.US Patent US 4,741,794, USA.
  • API. 2014a. API 17J: Specification for Unbonded Flexible Pipe. Fourth Edition. American Petroleum Institute, Texas, USA.
  • API 2014b. API RP 17B. Recommended Practice for flexible pipe. Fifth Edition, American Petroleum Institute, Texas, USA.
  • API. 2015. API Spec. 7 K. Specification for Drilling and Well Service Equipment. Sixth Edition, American Petroleum Institute, Texas USA.
  • API. 2017. API 17K: Specification for Bonded Flexible Pipe. Third Edition. American Petroleum Institute, Texas, USA.
  • API. 2020. API list of manufactures for flexible hoses. American Petroleum Institute, Texas, USA. Available at: https://www.api.org Retrieved on 22nd January, 2022.
  • Aranha JAP, Pinto MO. 2001. Dynamic tension in risers and mooring lines: an algebraic approximation for harmonic excitation. Appl Ocean Res. 23(2):63–81. doi:10.1016/s0141-1187(01)00008-6.
  • ARPM. 2015. Hose Handbook; IP-2 Ninth., Shadeland Station Way, Indianapolis: Association for Rubber Products Manufacturers.
  • Asano, et al. 1986. Hydraulic brake hose. Patent 4617213, USA, 1986-10-14.
  • ASTM. 2004. E111-04. Standard test method for young's modulus, tangent modulus, and chord modulus. West Conshohocken, PA: ASTM International.
  • ASTM. 2014. D885 / D885M-10A (2014) e1, Standard Test Methods for Tire Cords, Tire Cord Fabrics, and Industrial Filament Yarns Made from Manufactured Organic-Base Fibers, ASTM International, West Conshohocken, PA.
  • ASTM. 2016. D412-16, Standard Test Methods for Vulcanized Rubber and Thermoplastic Elastomers-Tension, ASTM International, West Conshohocken, PA.
  • Avery A, Martin S. 2003. Reinforced Thermoplastic Pipe: Innovative technology for onshore field developments. In: Volume 3: Materials Technology; Ocean Engineering; Polar and Arctic Sciences and Technology; Workshops. ASMEDC; Cancun, Mexico, June 8-13, 2003, pp. 787-794. https://doi.org/10.1115/OMAE2003-37041
  • Bai Y, Bai Q. 2005. Subsea pipelines and risers. First Ed. Elsevier, Oxford, UK.
  • Bai Y, Bai Q. 2012. Subsea Engineering Handbook. Gulf Professional Publishers (Elsevier), Waltham.
  • Balasooriya W, Schrittesser B, Pinter G, Schwarz T. 2018. A fracture mechanical approach to identify the behavior of elastomers in hostile environments. German Rubber Conference (Deutsche Kautschuk-Tagung) 2 - 5 July 2018, Nürnberg, Germany. DOI: 10.13140/RG.2.2.32431.87206
  • Balasooriya W, Clute C, Schrittesser B, Pinter G. 2021. A review on applicability, limitations, and improvements of polymeric materials in high-pressure hydrogen gas atmospheres. Polym Rev. DOI: 10.1080/15583724.2021.1897997
  • Baldwin DD, Reigle JA, Drey MD. Interface system between composite tubing and end fittings. Patent 6042152 A, USA, 28 March 2000.
  • Barnard. 1938. Hose end structure. Patent 2122126, USA, 1938-06-28.
  • Bastien SP. et al., 2009. Ocean Wave Energy Harvesting Buoy for Sensors., pp.3718–3725.
  • Beirão PJBFN, Malça C. 2014. Design and analysis of buoy geometries for a wave energy converter. Int J Energy Environ Eng. 5: Article 91. doi:10.1007/s40095-014-0091-7.
  • Bernitsas MM, Kokkinis T. 1983. Buckling of risers in tension due to internal pressure: Nonmovable boundaries. J Energy Resour Technol. 105(3):277–281. doi:10.1115/1.3230915.
  • Berteaux HO. 1976. Buoy engineering, New York, USA: John Wiley and Sons.
  • Berteaux HO, Goldsmith RA, Schott III WE. 1977. Heave and Roll response of free floating bodies of cylindrical shape, Massachusetts, USA.
  • Blanchard CJ, Anastasio FL. 2016. Floating systems and method for storing produced fluids recovered from oil and gas wells. US5885028A, USA, 10 December, 2016.
  • Bluewater. 2009a. Buoyed Up: The future of tanker loading/offloading operations, Amsterdam, The Netherlands: Bluewater Energy Services. Available at: https://www.bluewater.com/wp-content/uploads/2013/04/CALM-Buoy-brochure-English.pdf Retrieved on 30th July, 2020.
  • Bluewater. 2009b. Conventional Buoy Mooring Systems, Amsterdam, The Netherlands: Bluewater Energy Services.
  • Bluewater. 2011. Bluewater Turret Buoy- Technical Description, Amsterdam, The Netherlands: Bluewater Energy Services.
  • Bluewater, 2016. Turret Buoy, Amsterdam, The Netherlands: Bluewater Energy Services.
  • Bluewater 2020. Comprehensive Experience Overview: Oceans of knowledge. Bluewater, pp. 1-15. Available at: https://www.bluewater.com/wp-content/uploads/2020/05/Experience-Overview-May-2020.pdf Retrieved on 30th July, 2020.
  • Boatman LT. 2003. Flowline termination buoy with counterweight for a single point mooring and fluid transfer system. US6558215B1, USA, 06 May 2003.
  • Boccotti P. 2000. Wave Mechanics for Ocean Engineering, Amsterdam, The Netherlands: Elsevier B.V.
  • Boccotti P. 2015. Wave Mechanics and Wave Loads on Marine Structures, Imprint of Butterworth-Heinemann, Oxford, UK: Elsevier B.V. http://doi.org/10.1016/C2013-0-13663-X
  • Brady I, Williams S, Golby P. 1974. A study of the Forces Acting on Hoses at a Monobuoy Due to Environmental Conditions. In Offshore Technology Conference Proceeding -OTC 2136. Dallas, Texas, USA: OnePetro, pp. 1–10.
  • Braud J, Brown PA, O'Nion G. 1998. Submerged CALM buoy. US5816183A, USA, 06 October, 1998.
  • Bree J, Halliwell AR, O’Donoghue T. 1989. Snaking of floating marine oil hose attached to SPM BUOY. J Eng Mech. 115(2):265–284. doi:10.1061/(asce)0733-9399(1989)115:2(265).
  • Bridgestone J. 1976. Study of causes of kinking in floating hoses at Petrobras/Tefran terminal. Report No. 6YMT-0011, Japan.
  • Bridgestone J. 2017. Hydraulic hose: couplings, accessories and equipment, Bensheim, Germany: Bridgestone Company.
  • Briggs. 1990. Graduated friction anchor. Patent 4950001, USA, 1990-08-21.
  • Brown MJ. 1985a. Mathematical Model of a Marine Hose-String at a Buoy- Part 1 - Static Problem. In P. Dyke, A. O. Moscardini, & E. H. Robson, eds. Offshore and Coastal Modelling: Springer, pp. 251–277. New York, NY. https://doi.org/10.1007/978-1-4684-8001-6_13
  • Brown MJ. 1985b. Mathematical Model of a Marine Hose-String at a Buoy- Part 2 - Dynamic Problem. In P. Dyke, A. O. Moscardini, & E. H. Robson, eds. Offshore and Coastal Modelling: Springer, pp. 279–301. New York, NY. https://doi.org/10.1007/978-1-4684-8001-6_14
  • Brown MJ, Elliott L. 1988. Two-dimensional dynamic analysis of a floating hose string. Appl Ocean Res. 10(1):20–34. doi:10.1016/s0141-1187(88)80021-x.
  • Brown PA, Poldervaart L. 1996 Fluid transfer system for an offshore moored floating unit. US5505560A, USA, 09 April, 1996.
  • Brownsort P. 2015a Ship Transport of CO2 for Enhanced Oil Recovery: Literature Survey; SCCS (Scottish Carbon Capture and Storage): Edinburgh, UK, 2015; pp. 1–43. Available online: http://www.sccs.org.uk/images/expertise/reports/co2-eor-jip/SCCS-CO2-EOR-JIP-WP15-Shipping.pdf (accessed on 29 July 2021).
  • Brownsort P. 2015b. Offshore offloading of CO₂: Review of single point mooring types and suitability. Scottish Carbon Capture & Storage (SCCS). Available at: https://era.ed.ac.uk/bitstream/handle/1842/15712/SCCS-CO2-EOR-JIP-Offshore-offloading.pdf?sequence=1&isAllowed=y (accessed on 22 January 2022).
  • BSI. 2004. BS 903-5:2004 Physical testing of rubber. Guide to the application of rubber testing to finite element analysis. 2004 BSI, London.
  • BSI. 2008. BS EN 1474-2: 2008. European Standard 1474: Installation and equipment for liquefied natural gas – Design and testing of marine transfer systems. Part 2: Design and testing of transfer hoses. British Standards Institution.
  • Bunnik, THJ, de Boer, G, Cozijn, JL, van der Cammen, J, van Haaften, E, & ter Brake, E. “Coupled Mooring Analysis and Large Scale Model Tests on a Deepwater Calm Buoy in Mild Wave Conditions.” Proceedings of the ASME 2002 21st International Conference on Offshore Mechanics and Arctic Engineering. 21st International Conference on Offshore Mechanics and Arctic Engineering, Volume 1. Oslo, Norway. June 23–28, 2002. pp. 65-76. ASME. https://doi.org/10.1115/OMAE2002-28056
  • Busch RA. 1987. Spar buoy fluid transfer system. US4648848A, USA, 10 March, 1987.
  • Camozzato G, Poirier N, Hiller D, Acheritobehere A, Xavier M, Romeu NB, Seize E, Silva AL. 2015. Execution challenges for a first of its kind project in Santos basin Brazil. In: Offshore Technology Conference, 04-07 May, Houston, Texas, USA. https://doi.org/10.4043/25843-MS
  • Cao P, Xiang S, He J, Kibbee S, Bian S. 2015. Advancing Cold Water Intake Riser design through model test. In: Offshore Technology Conference, 04-07 May, Houston, Texas, USA. https://doi.org/10.4043/25917-MS
  • Cao Q. et al. 2017. Analysis of multi-layered fiber-wound offshore rubber hose under internal pressure. ICCS17 Conference, Paris, France.
  • Carpenter EB, Idris K, Leonard JW, Yim SCS. 1994. Behaviour of a moored Discus Buoy in an Ochi-Hubble Wave Spectrum -OMAE1994. In: Offshore Technology Conference Proceeding. ASME, pp. 347–354. Available at: https://web.engr.oregonstate.edu/~yims/publications/OMAE1994.DiscusBuoy.pdf (accessed on: 15th January, 2022).
  • Carter JW. 1985. Method and apparatus for longitudinally reinforcing continuously generated plastic pipe. Patent 4887, Editor, USA, 1985.
  • Castelbaum, et al. 1984. Flexible hose having an end connection fitting. Patent 4477108, USA, 1984-10-16.
  • Chakrabarti SK. 1994. Offshore Structure Modeling -Advanced Series on Ocean Engineering -Volume 9, Singapore: World Scientific.
  • Chakrabarti SK. 2001. Hydrodynamics of offshore structures Reprint., Southampton, UK: WIT Press.
  • Chakrabarti SK. 2002. The Theory and Practice of Hydrodynamics and Vibration -Advanced Series on Ocean Engineering -Volume 20, Singapore: World Scientific.
  • Chakrabarti SK. 2005. Handbook of Offshore Engineering. Volume 1-2, Elsevier, Oxford, UK.
  • Chakrabarti SK, Frampton RE. 1982. Review of riser analysis techniques. Appl. Ocean Res. 4(2):73–90. https://doi.org/10.1016/S0141-1187(82)80002-3
  • Charlesworth D, D'All B, Zimmerlin C, Remita E, Langhelle N, Wang T. 2011. Operational experience of the fatigue performance of a flexible riser with a flooded annulus. In: Paper OTC 22398 presented at the OTC Brasil, Rio de Janeiro, Brazil, October 2011. https://doi.org/10.4043/22398-MS
  • Chen Y, Seemann R, Krause D, Tay T-E, Tan VBC. 2016. Prototyping and testing of composite riser joints for deepwater application. J Reinf Plast Compos. 35(2):95–110. doi:10.1177/0731684415607392.
  • Chesterton C. 2020. A global and local analysis of offshore composite material reeling pipeline hose, with FPSO mounted reel drum. BEng Dissertation. Lancaster University, Engineering Department.
  • Chevalier, et al. 1974. Couplings of reduced size and capable of transmitting high mechanical stresses between an armoured flexible member and a rigid element. Patent 3799587, USA, 1974-03-26.
  • Chibueze NO, Ossia CV, Okoli JU. 2016. On the fatigue of steel catenary risers. Strojniski Vestn. 62(12):751–756. doi:10.5545/sv-jme.2015.3060.
  • Chiu C-H, Hwan C-L, Tsai H-S, Lee W-P. 2007. An experimental investigation into the mechanical behaviors of helical composite springs. Compos Struct. 77(3):331–340. doi:10.1016/j.compstruct.2005.07.022.
  • Cho J-R, Yoon Y-H. 2016. Large deformation analysis of anisotropic rubber hose along cyclic path by homogenization and path interpolation methods. J Mech Sci Technol. 30(2):789–795. doi:10.1007/s12206-016-0134-5.
  • Cho JR, Song JI. 2007. Swaging process of power steering hose: Its finite element analysis considering the stress relaxation. J Mater Process Technol. 187–188:497–501. doi:10.1016/j.jmatprotec.2006.11.113.
  • Cho JR, Yoon YH, Seo CW, Kim YG. 2015. Fatigue life assessment of fabric braided composite rubber hose in complicated large deformation cyclic motion. Finite Elem Anal Des. 100:65–76. doi:10.1016/j.finel.2015.03.002.
  • Cho JR, Song JI, Noh KT, Jeon DH. 2005. Nonlinear finite element analysis of swaging process for automobile power steering hose. J Mater Process Technol. 170(1–2):50–57. doi:10.1016/j.jmatprotec.2005.04.077.
  • Choi B-L, Choi B-H. 2015. Numerical method for optimizing design variables of carbon-fiber-reinforced epoxy composite coil springs. Compos B Eng. 82:42–49. doi:10.1016/j.compositesb.2015.08.005.
  • Chung JS, Whitney AK, Loden WA. 1981. Nonlinear transient motion of deep ocean mining pipe. J Energy Resour Technol. 103(1):2–10. doi:10.1115/1.3230811.
  • Chung JS, Cheng BR, Huttelmaier HP. 1994a. Three-dimensional coupled responses of a vertical deep-ocean pipe: Part I. Excitation at pipe ends and external torsion. International Journal of Offshore and Polar Engineering. 4(4):320–330.
  • Chung JS, Cheng BR, Huttelmaier HP. 1994b. Three-dimensional coupled responses of a vertical deep-ocean pipe: Part II. Excitation at pipe top and external torsion. International Journal of Offshore and Polar Engineering. 4(4):331–339.
  • Chung JS, Felippa CA. 1981. Nonlinear static analysis of deep ocean mining pipe—part II: Numerical studies. J Energy Resour Technol. 103(1):16–25. doi:10.1115/1.3230808.
  • Cristescu N. 1964. Rapid motions of extensible strings. Journal of the Mechanics and Physics of Solids. 12(5):90025–90025. doi:10.1016/0022-5096.
  • Continental. 2021. Welcome to Contnental (History 1871). Continental Corporation. Available at: www.continental.com/en/ (Accessed on 2nd November, 2021).
  • ContiTech. 2014. Hose Data Tables: GMPHOM 2009 hoses. Continental ContiTech and Dunlop Oil & Marine, Grimsby, UK.
  • ContiTech. 2017. Marine Hoses - Offshore Fluid Transfer. Contitech Oil & Gas. Available at: http://www.contitech-oil-gas.com/pages/marine-hoses/marine-hoses_en.html [Accessed September 30, 2017].
  • ContiTech. 2018. 2H Offshore Lunch & Learn - API 17 K Production Hoses. Dunlop Oil & Marine - ContiTech. Available at: https://aosoffshore.com/wp-content/uploads/2020/02/Contitech-API-17K-production-hose.pdf Retrieved on: 7th August 2021
  • ContiTech. 2019. Dunlop Oil & Marine - ContiTech Marine Hose Brochure. Available at: https://aosoffshore.com/wp-content/uploads/2020/02/ContiTech_Marine-Brochure.pdf Retrieved on: 9th April 2020
  • ContiTech. 2020a. Dunlop Oil & Marine - ContiTech Offshore Product Catalogue: GMPHOM 2009 Hoses Brochure. Available at: https://www.jst-group.com/wp-content/uploads/2020/01/Brochure-Dunlop-Oil-and-Marine-GMPHOM.pdf Retrieved on: 9th April 2021
  • ContiTech. 2020b. Marine Hose Brochure. Available online: https://aosoffshore.com/wp-content/uploads/2020/02/ContiTech_Marine-Brochure.pdf (accessed on 17 February 2021).
  • Coppens A., Poldervaart L. 1984. Mooring system. 25 December, 1984.
  • Costa A.P.S. 2007. Estudo de uma nova concepção de linha de mangotes para transferência de óleo no mar. (A Study of a New Conception of Offloading Hose Lines for Transferring Oil Offshore). Master Dissertation, COPPE—UFRJ (In Portuguese), Rio de Janeiro, 2007. Available at: https://docplayer.com.br/79575829-Estudo-de-uma-nova-concepcao-de-linha-de-mangotes-para-transferencia-de-oleo-no-mar-ana-paula-dos-santos-costa.html (accessed on 17 February 2021).
  • Cozijn JL, Bunnik THJ. 2004. Coupled mooring analysis for a deep water CALM buoy. Proceedings of the ASME 2004 23rd International Conference on Offshore Mechanics and Arctic Engineering. 23rd International Conference on Offshore Mechanics and Arctic Engineering, Volume 1, Parts A and B. Vancouver, British Columbia, Canada. June 20–25, 2004. pp. 663-673. ASME. https://doi.org/10.1115/OMAE2004-51370.
  • Cozijn H, Uittenbogaard R, Brake ET. 2005. Heave, roll and pitch damping of a deepwater CALM buoy with a skirt. International Society of Offshore and Polar Engineering Conference Proceedings; Seoul, Korea (ISOPE), June 19-24, 2005, Seoul, Korea; p. 388–395. [accessed 2021 December 22]. Available at: https://www.researchgate.net/publication/267364857_Heave_Roll_and_Pitch_Damping_of_a_Deepwater_CALM_Buoy_with_a_Skirt.
  • Craig I. 2016. Review of bonded rubber flexible hose design codes and guidelines in relation to Sea Water Intake Risers on FPSO vessels. In: Paper presented at the Offshore Technology Conference Asia, Kuala Lumpur, Malaysia, March 2016. https://doi.org/10.4043/26648-MS
  • Cruz I, Claro C, Gouveia J, Lemos L, Câmara M, Pereira L, Mair JA, de Paula MTR, Escudero CC. 2015. The new technology enablers developed and deployed on a live project. In: Offshore Technology Conference, 04-07 May, Houston, Texas, USA. https://doi.org/10.4043/25832-MS
  • Cruz I, Claro C, Sahonero D, Otani L, Pagot J. 2015. The Buoy Supporting Risers (BSR) system: A novel riser solution for ultra-Deep Water Subsea developments in harsh environments. In: Offshore Technology Conference, OTC Brasil, 27-29 October, Rio de Janeiro, Brazil. https://doi.org/10.4043/26330-MS
  • Cruz Ivan, Hepner G, Karunakaran D, Claro C, Nicoletti F, Fontaine E, Hesar M, de Paula MTR, Trovoado LC. 2015. The Buoy Supporting Risers (BSR) system: Engineering a solution for ultra-Deep Water Subsea developments in harsh environments. In: Offshore Technology Conference, 04-07 May, Houston, Texas, USA. https://doi.org/10.4043/25865-MS
  • Dahl CS, Andersen BAM, Gronne M. 2012. Developments in managing flexible risers and pipelines, A suppliers perspective. In: Paper OTC 21844. Presented at the Offshore Technology Conference, Houston, Texas, USA, May 2011. https://doi.org/10.4043/21844-MS
  • Dai Y, Li X, Yin W, Huang Z, Xie Y. 2021. Dynamics analysis of deep-sea mining pipeline system considering both internal and external flow. Mar Georesour Geotechnol. 39(4):408–418. doi:10.1080/1064119x.2019.1708517.
  • Dareing D.W. 2012. Mechanics of drillstrings and marine risers. First Edition. ASME Press, New York, USA. https://doi.org/10.1115/1.859995
  • Davidson J, Ringwood J. 2017. Mathematical modelling of mooring systems for wave energy converters—A review. Energies. 10(5):666. doi:10.3390/en10050666.
  • De Baan J, van Heijst WJ. 1991. Disconnectable mooring system for deep water. US5044297A, USA, 03 September, 1991.
  • De Baan J, van Heijst WJ. 1994. Offshore tanker loading system. US5275510A, USA, 04 January 1994.
  • De Baan J. 2007. Off-shore mooring and fluid transfer system. Patent US7179144B2, USA. 2007-02-20.
  • De Sousa JRM, Lima ECP, Ellwanger GB, Papaleo A. 2001, Local mechanical behavior of flexible pipes subjected to installation loads. In Proceedings of the 20th International Conference on Offshore Mechanics and Arctic Engineering.
  • Dean RG, Dalrymple RA. 1991. Water wave mechanics for engineers and scientists - Advanced Series on Ocean Engineering, Volume 2, Singapore: World Scientific.
  • DNV, 2014. DNV-OS-C201 Structural Design of Offshore Units (WSD Method) -Offshore Standard, Norway: Det Norske Veritas.
  • DNV 2007. DNV-OS-F101 Offshore Standard. Submarine pipeline systems. Det Norske Veritas, Oslo, Norway.
  • DNV 2010. DNV-OS-F201 Dynamic Risers: offshore standard. Det Norske Veritas, Oslo.
  • DNVGL 2015. DNVGL-OS-E403. Flexible hoses - Rules and standards. Available at: https://rules.dnv.com/docs/pdf/DNV/CP/2015-12/DNVGL-CP-0183.pdf
  • Doyle S, Aggidis GA. 2019. Development of multi-oscillating water columns as wave energy converters. Renew Sustain Energy Rev. 107:75–86. doi:10.1016/j.rser.2019.02.021.
  • Drumond GP, Pasqualino IP, Pinheiro BC, Estefen SF. 2018. Pipelines, risers and umbilicals failures: A literature review. Ocean Eng. 148:412–425. doi:10.1016/j.oceaneng.2017.11.035.
  • DSMA. 2019 Continental / ContiTech: Eddelbüttel + Schneider GmbH. Deep Sea Mining Alliance (DSMA), Hamburg, Germany. Available at: https://www.deepsea-mining-alliance.com/en-gb/continental
  • Duggal A, Ryu S. 2005. The dynamics of deepwater offloading buoys. In WIT Transactions on The Built Environment. Vol. 84, Paper FSI05026FU. WIT Press, Southampton, UK. Available at: https://www.witpress.com/Secure/elibrary/papers/FSI05/FSI05026FU.pdf, 5th January, 2022.
  • Dunlop 2015. Dunlop History- Where it all began. Dunlop Europe. Available at: www.dunlop.eu/dunlop_be/_header/about_us/history/ (Accessed on 2nd November, 2021).
  • Dunlop. 1971. Dunlop Offshore hose manual, Grimsby, England: Dunlop Oil and Marine Division.
  • Eggers F, Almeida JHS Jr, Azevedo CB, Amico SC. 2019. Mechanical response of filament wound composite rings under tension and compression. Polym Test. 78(105951):105951. doi:10.1016/j.polymertesting.2019.105951.
  • Eisenzimmer. 1982. Hose coupling. Patent 4353581, USA, 1982-10-12.
  • Ellis SE, Wadsworth TM, Lee K, Gerdes M, Altizer S. 2008. Connection Fatigue Index (CFI): An engineered solution for connection selection and a replacement for BSR. In: Society of Petroleum Engineers, IADC/SPE Drilling Conference, 4-6 March, Orlando, Florida, USA. https://doi.org/10.2118/112105-MS
  • EMSTEC. 2016. EMSTEC Loading & Discharge Hoses for Offshore Moorings, Rosengarten: EMSTEC. Available at: https://www.emstec.net/fileadmin/files/product/downloads/EMSTEC_Loading_and_Discharge_HOM_2009__5th_Edition-open-file_10.pdf
  • EMSTEC. 2021. EMSTEC -About us. Available at: www.emstec.net/about/ (Accessed on 2nd November, 2021).
  • Entwistle KM. 1981. The behaviour of braided hydraulic hose reinforced with steel wires. Int J Mech Sci. 23(4):229–241. doi:10.1016/0020-7403(81)90048-5.
  • Eriksson M, Isberg J, Leijon M. 2006. Theory and experiment on an elastically moored cylindrical buoy. IEEE J Ocean Eng. 31(4):959–963. doi:10.1109/joe.2006.880387.
  • Fantuzzi N, Borgia F, Formenti M, Righini R. 2019. Mechanical optimization of an innovative overboarding chute for floating umbilical systems. Ocean Eng. 180:144–161. doi:10.1016/j.oceaneng.2019.04.004.
  • Feiler, et al. 1950. Coupling assembly for rotary drill hose. Patent 2506494, USA, 1950-05-02.
  • Felippa CA, Chung JS. 1981. Nonlinear static analysis of deep ocean mining pipe—Part I: Modeling and formulation. J Energy Resour Technol. 103(1):11–15. doi:10.1115/1.3230807.
  • Fernando US, Tan Z, Sheldrake T, Clements R. 2004 The stress analysis and residual stress evaluation of pressure armour layers in flexible pipes using 3D finite element models. In: 23rd International Conference on Offshore Mechanics and Arctic Engineering, Volume 3. ASMEDC. https://doi.org/10.1115/OMAE2004-51200
  • Fisher, et al. 1999. Gasket assembly with elastomer expansion area. Patent 5947533, USA,1999-09-07.
  • Flexomarine. 2013. Product Catalogue—Hoses for Offshore Loading and Discharge Operations. Available at: www.flexomarine.com.br
  • FluidTec. 2015. Anflex Industrial hose, Singapore: Fluid-Tec Engineering & Trading. Available at: https://fluid-tec.net (Accessed on 2nd November, 2021).
  • Fluiconnecto. 2021. Fluiconnecto-Our History. Available at: www.fluiconnecto.com/about-us/history (Accessed on 2nd November, 2021).
  • Flory JF. 1976. Combined catenary and single anchor leg mooring system. US3979785A, USA, 14 September 1976.
  • Francesca Brindle. 2016. Trelleborg launches new seawater intake hoses for FLNG. Available at: https://www.hydrocarbonengineering.com/product-news/22032016/trelleborg-launches-new-seawater-intake-hoses-for-flng-applications-2835/ Retrieved on 19th July, 2020.
  • Friedrich R, Kuo M, Smyth K. 1998. High-pressure fiber reinforced composite pipe joint. Patent 5785092 A, USA, 28 July 1998.
  • Gallagher WP. 1995. Marine riser. Patent 5474132 A, USA, 12 December 1995.
  • Gao P, Gao Q, An C, Zeng J. 2021. Analytical modeling for offshore composite rubber hose with spiral stiffeners under internal pressure. Journal of Reinforced Plastics and Composites. 40(9-10):352-364. https://doi.org/10.1177/0731684420962577
  • Gao Q, Zhang P, Duan M, Yang X, Shi W, An C, Li Z. 2018. Investigation on structural behavior of ring-stiffened composite offshore rubber hose under internal pressure. Appl Ocean Res. 79:7–19. doi:10.1016/j.apor.2018.07.007.
  • Giacosa A., Mauriès B., Lagarrigue V. 2016. Joining forces to unlock LNG tandem offloading using 20” LNG floating hoses: An example of industrial collaboration. Presented at the Offshore Technology Conference, Houston, 2-5 May 2016. OTC-27132-MS.
  • Giorgi G, Penalba M, Ringwood J. 2016. Nonlinear Hydrodynamic Models for Heaving Buoy Wave Energy Converters. AWTEC Asian Wave and Tidal Energy Conference, Singapore. Available at: http://www.eeng.nuim.ie/jringwood/Respubs/C264AWTm.pdf. Retrieved on 26th June, 2020.
  • Goddard. 1998. Pipe coupler. Patent 5765880, USA, 1998-06-16.
  • Goff R, Kay J. 2015. Investigations into the immediate and underlying causes of failures of offshore riser emergency shutdown valves. Prepared by the Health and Safety Laboratory for the Health and Safety Executive 2015. Research Report RR1072, HSE Books. Available at: https://www.hse.gov.uk/research/rrpdf/rr1072.pdf
  • Goldsworthy W, Hardesty E. 1973. Method and apparatus for producing filament reinforced tubular products on a continuous basis. Patent 3769127 A, USA, 30 October 1973.
  • Gong S, Xu P, Bao S, Zhong W, He N, Yan H. 2014. Numerical modelling on dynamic behaviour of deepwater S-lay pipeline. Ocean Eng. 88:393–408. doi:10.1016/j.oceaneng.2014.07.016.
  • Gonzalez GM, de Sousa JRM, Sagrilo LVS. 2014. Behavior of offloading marine hose submitted to bending. Ibero-Latin American Congress on Computational Methods in Engineering Conference (CILAMCE2014), November 23-26, 2014. Fortaleza- Ceara, Brazil. Pages 1-15. Available at: https://www.researchgate.net/publication/301493289_BEHAVIOR_OF_OFFLOADING_MARINE_HOSE_SUBMITTED_TO_BENDING Retrieved on 24th January, 2022.
  • Gonzalez GM, de Sousa JRM, Sagrilo LVS. 2016. A study on the axial behavior of bonded flexible marine hoses. Mar syst ocean technol. 11(3–4):31–43. doi:10.1007/s40868-016-0015-x.
  • Goodall. 1940. Rotary hose coupling construction. Patent 2220785, USA, 1940-11-05.
  • GoodYear. 2015. Parker Hose. Good year Rubber Products. Avaialable at: https://www.goodyearrubberproducts.com/top-100-products/Parker-Hose/Parker-Hose.asp Accessed on 8th September, 2021.
  • GoodYear. 2021. GoodYear’s Beginnings. Available at: www.corporate.goodyear.com/us/en/about/history/beginnings.html (Accessed on 2nd November, 2021).
  • Gouveia J, Sriskandarajah T, Karunakaran D, Manso D, Chiodo M, Zhou D, Cao L, Rao V, Vargas T, Escudero C. 2015a. Steel catenary risers (SCRs): From design to installation of the first reeled CRA lined pipes. Part I - risers design. In: OTC-25839-MS. In Offshore Technology Conference Proceeding. Houston, Texas, USA: OnePetro. https://doi.org/10.4043/25839-MS
  • Gouveia J, Sriskandarajah T, Karunakaran D, Manso D, Chiodo M, Maneschy R, Pedrosa J, Cruz I. 2015b. The Buoy Supporting Risers (BSR) system: Steel catenary risers (SCRs) from design to installation of the first Reel CRA lined pipes. In: Offshore Technology Conference, OTC Brasil, 27-29 October, Rio de Janeiro, Brazil. https://doi.org/10.4043/26332-MS
  • Graber HC, Terray EA, Donelan MA, Drennan WM, Van Leer JC, Peters DB. 2000. ASIS—A new air–sea interaction spar buoy: Design and performance at sea. J Atmos Ocean Technol. 17(5):708–720. doi:10.1175/1520-0426(2000)017<0708:aanasi>2.0.co;2.
  • Graham H. 1982. Newcastle model hose tests, Grimsby, England.
  • Grepaly, Istvan et al. 2005. High-pressure hose with adhesively bonded hose coupling which can be post-assembled. United States Patent 6938932, USA, 9th June, 2005.
  • Gu Z, Hou X, Keating E, Ye J. 2020. Non-linear finite element model for dynamic analysis of high-speed valve train and coil collisions. Int J Mech Sci. 173(105476):105476. doi:10.1016/j.ijmecsci.2020.105476.
  • Han SR, Choi JH, Kwak JS. 2012. New metal fitting geometry and optimization of the swaging parameters for an automobile power steering hose. International Journal of Automotive Technology. 13(4):637–644. doi:10.1007/s12239−012−0062−z.
  • Harkleroad WI. 1969. Basic Principles of Hose Design. Rubber Chemistry and Technology 42 (3): 666–674. https://doi.org/10.5254/1.3539247
  • Hayes G, Lemond J. 2013. Reducing noise in hydraulic systems. Parker Hannifin Corporation. Available at: https://pdfs.semanticscholar.org/4632/3432ab9d101393f6ae7beea7e01f86f09d0f.pdf
  • Hiller D, Karunakaran D, Cruz I, Tadeu M. 2015. Developing an innovative Deepwater riser system: From concept to the full production of Buoy Supporting Risers (BSR). In: Offshore Technology Conference, 04-07 May, Houston, Texas, USA. https://doi.org/10.4043/25850-MS
  • Haid L, Stewart G, Jonkman J, Robertson A, Lackner M, Matha D. 2013. Simulation-length requirements in the loads analysis of offshore floating wind turbines. In: 32nd International Conference on Ocean, Offshore and Arctic Engineering. Nantes, France: ASME.
  • Hampton JE. 1991. Mooring system. US5065687A, USA, 19 November, 1991.
  • Hasegawa K, Li Y, Osakabe K. 2014. Collapse loads for circumferentially through-wall cracked pipes subjected to combined torsion and bending moments. Eng Fract Mech. 123:77–85. doi:10.1016/j.engfracmech.2013.12.013.
  • Hasselmann K, Barnett TP, Bouws E, Carlson H, Cartwright DE, Enke K, Ewing JA, Gienapp H, Hasselmann DE, Kruseman P, et al. 1973. Measurements of wind-wave growth and swell decay during the Joint North Sea Wave Project (JONSWAP). Ergänzungsheft zur Deutsche Hydrographische Zeitschrift; Ergänzungsheft; Reihe A, 12(8 0).
  • Hattori, et al. 1989. Corrugated plastic pipe coupling. Patent 4871198, USA. 1989-10-03.
  • Hefler, et al. 1992. Flexible coupling device for use in an engine manifold system. Patent 5159811, USA, 1992-11-03.
  • Ho R-T. 2008. Engineering considerations for offshore FSRU LNG receiving terminals. In: Offshore Technology Conference (OTC), 5-8 May, Houston, Texas, USA. Paper OTC 19439. https://doi.org/10.4043/19439-MS
  • Holthuijsen LH. 2007. Waves in oceanic and coastal waters 1st ed., New York, USA: Cambridge University Press.
  • Hong S, Hong SW. 1994. A three-dimensional dynamic analysis of towed system, Part 1. A Mathematical Formulation. Journal of Ocean Engineering and Technology. 8(1):16-22. Available at: https://www.koreascience.or.kr/article/JAKO199411920577005.pdf
  • Hong K-S, Shah UH. 2018. Vortex-induced vibrations and control of marine risers: A review. Ocean Eng. 152:300–315. doi:10.1016/j.oceaneng.2018.01.086.
  • Horvath, et al. 1970. Head-formation of flexible hoses, especially for deep-drilling hoses. Patent 3531143, USA, 1970-09-29.
  • Horvath, et al. 1977. Coupling for reinforced flexible hoses. Patent 4000920, USA, 1977-01-04.
  • HoseCo. 2017. HoseCo Oil, Gas & Marine solutions, Canning Vale, Australia: HoseCo Oil.
  • Huang TS, Leonard JW. 1989. Lateral Stability of a flexible submarine hoseline, Port Hueneme, California, USA.
  • Humphreys G. 2006. Composite marine riser. Patent 7144048A1, USA, 25 December 2006.
  • Hursa A, Rolich T, Ražić SE. 2009. Determining pseudo Poisson’s ratio of woven fabric with a digital image correlation method. Textile Research Journal; 79(17): 1588–1598. https://doi.org/10.1177/0040517509104316.
  • IEA. 2017. World Energy Outlook 2017 (WEO17). International Energy Agency (IEA). Pages 1-782. Available at: https://www.iea.org/reports/world-energy-outlook-2017 Accessed on: 24th January, 2022
  • Irvine H. Max. 1981. Cable Structures. MIT Press, Cambridge, Massachusett, USA.
  • IMCA. 2001. Failure of cable socks (chinese fingers) on subsea rigging. IMCA SF 12/01 Report. Available at: https://www.imca-int.com/alert/136/failure-of-cable-socks-chinese-fingers-on-subsea-rigging/
  • Irvine HM. 1981. Cable structures. Cambridge (MA): MIT Press.
  • Isnard J-L, Ducousso P, Perratone R. 1999. Vessel with a disconnectable riser supporting buoy. US5941746A, USA, 24 August, 1999.
  • ISO. 2006. ISO 13628-10: Petroleum and natural gas industries-Design and operation of subsea production systems-Part 10: Specification for bonded flexible pipe. International Standard Organisation, Geneva, Switzerland.
  • ISO. 1991. ISO 1436: Rubber Hose and Hose Assemblies-Wire-Reinforced Hydraulic Type-Specification, International Standard Organisation, Geneva, Switzerland.
  • ISO. 1997. ISO 8032: Rubber and Plastics Hose Assemblies Flexing Combined Hydraulic Impulse Test Half-Omega Test,” International Standard Organisation, Geneva, Switzerland.
  • Jae-Won Oh, Chang-Ho Lee, Sup Hong, Dae-Sung Bae, Hui-Je Cho, Hyung-Woo Kim. 2014. A study of the kinematic characteristic of a coupling device between the buffer system and the flexible pipe of a deep-seabed mining system. International Journal of Naval Architecture and Ocean Engineering, Volume 6, Issue 3, September 2014, Pages 652-669. https://doi.org/10.2478/IJNAOE-2013-0203
  • Ja'e IA, Ali MOA, Yenduri A, Nizamani Z, Nakayama A. (2022). Optimisation of mooring line parameters for offshore floating structures: A review paper. Ocean Engineering, Volume 247, 1 March 2022, 110644. https://doi.org/10.1016/j.oceaneng.2022.110644.
  • Jansen MB. 1985. Fixed turret subsea hydrocarbon production terminal. US4301840A, USA, 24 November, 1981.
  • Jiang D, Ma L. 2017. Design and analysis of a wave-piercing buoy. In Automotive, Mechanical and Electrical Engineering. CRC Press. p. 69–73. Available at: https://doi.org/10.1201/9781315210445-16.
  • Jiang D, Zhang J. 2017. Effect of heave plate on wave piercing buoy. In: Automotive, Mechanical and Electrical Engineering. CRC Press. p. 367–370.
  • Jiang, D, Li, W, et al., 2017. The strength analysis of the wave piercing buoy. In AIP Conference Proceedings.
  • Johansson, et al. 1991. Method of joining tubes having a corrugated wall of plastic material. Patent 5053097, USA, 1991-10-01.
  • Jonathan Petit. 2016. Trelleborg seawater intake hoses meet unique demands of FLNG applications. Available at: https://news.cision.com/trelleborg/r/trelleborg-seawater-intake-hoses-meet-unique-demands-of-flng-applications,c9939506 and https://mb.cision.com/Main/584/9939506/491456.pdf Retrieved on 19th July, 2020.
  • Joubert P, Falcimaigne J. 1989. Device for preventing a flexible line from twisting. US4820217A, USA, 11 April, 1989.
  • Joubert P, Loupias M, Durando P. 1981. Device for transferring a fluid through a liquid body by means of a flexible pipe. US4263004A, USA, 21 April, 1981.
  • Kaiser. 1960. Fitting for a large-diameter rubber or plastic hose subjected to high loads. Patent 2940778, USA, 1960-06-14.
  • Kalogirou A, Bokhove O. 2016. Mathematical and numerical modelling of wave impact on wave-energy buoys; OMAE2016-54937. In Proceedings of the ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering. Volume 7: Ocean Engineering. Busan, South Korea. June 19–24, 2016. V007T06A067. ASME, pp. 1–8. https://doi.org/10.1115/OMAE2016-54937.
  • Kang Y, Sun L, Kang Z, Chai S. 2014. Coupled analysis of FPSO and CALM buoy offloading system in West Africa. In: Proceedings of the International Conference on Offshore Mechanics and Arctic Engineering - OMAE2014-23118. California, USA: ASME.
  • Katayama T, Hashimoto K, Asou H, Komori S. 2015. Development of a motion stabilizer for a shallow-sea-area spar buoy in wind, tidal current and waves. J Ocean Wind Energy. 2(3):182–192. doi:10.17736/jowe.2015.jcr40.
  • Katona T, Nagy T, Zandiyeh ARK, Prinz M, Boros A. 2009. High performance flexible lines for the Oil industry. Presented at the IRC 2009, in Nuremberg, Germany, June 29- July 02, 2009. Published on: Kautschuk und Gummi Kunststoffe KGK, Issue November 2009. pages 589-592. Available at: https://www.kgk-rubberpoint.de/wp-content/uploads/migrated/paid_content/artikel/910.pdf
  • Kenwell. 2021. Seaflex Offshore Laoding & Discharge Hoses - Super Stream Hose. Available at: http://www.kenwell.com.sg/products/seaflex_offshore_loading_&_discharge_hoses/super_stream_hose Accessed on: 19th July, 2021.
  • Kim J, Kweon H-M, Jeong W-M, Cho I-H, Cho H-Y. 2015. Design of the dual-buoy wave energy converter based on actual wave data of East Sea. Int J Nav Archit Ocean Eng. 7(4):739–749. doi:10.1515/ijnaoe-2015-0052.
  • Kim S-S, Yun H-S, Lee C-H, Kim H-W, Hong S. 2015. Efficient analysis of a deep-seabed integrated mining system using a subsystem synthesis method. In: Proceedings of the ASME 2015 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Volume 6: 11th International Conference on Multibody Systems, Nonlinear Dynamics, and Control. Boston, Massachusetts, USA. August 2–5, 2015. V006T10A014. ASME. https://doi.org/10.1115/DETC2015-46700
  • Kim BT, Kim HJ. 2003. A study on the deformation characteristics of a high-pressure hose with respect to the swaging strokes. J. Korea Society for Power System Engineering 17(4): 37−42. [in Korean Language]. Available at: https://www.joet.org/journal/view.php?number=1664 (Accessed on 2nd November, 2021).
  • Kim BT, Kim HJ. 2003. Nonlinear finite element analysis for the swaging of a high-pressure hose. J. Korea Society for Power System Engineering 7(2):44−50.
  • KLAW. 2021. Reducing stress on Hose Reel transfer systems when using Marine Breakaway Couplings. KLAW Whitepaper. Available at: https://www.klawproducts.com/klaw/reports-and-papers/reducing-stress-hose-reels/
  • Knapp RH. 1979. Derivation of a new stiffness matrix for helically armoured cables considering tension and torsion. Int J Numer Methods Eng. 14(4):515–529. doi:10.1002/nme.1620140405.
  • Krismer S. 2003. Hydraulic hose failures caused by corrosion of the reinforcing strands. Pr Fail Anal. 3(2):33–39. doi:10.1007/bf02717420.
  • Kurt. 2021. Marine Hydraulics: Marine Hose Products. Kurt Hydraulics. Available at: www.kurthydraulics.com/industry-solutions/marine/ (Accessed on 2nd November, 2021).
  • Kwak S-B, Choi N-S. 2009. Micro-damage formation of a rubber hose assembly for automotive hydraulic brakes under a durability test. Eng Fail Anal. 16(4):1262–1269. doi:10.1016/j.engfailanal.2008.08.009.
  • Kwong AHM, Edge KA. 1998. A method to reduce noise in hydraulic systems by optimizing pipe clamp locations. Proc Inst Mech Eng Part I J Syst Control Eng. 212(4):267–280. doi:10.1243/0959651981539451.
  • Kuiper GL, Metrikine AV, Battjes JA. 2007. A new time-domain drag description and its influence on the dynamic behaviour of a cantilever pipe conveying fluid. J Fluids Struct. 23(3):429–445. doi:10.1016/j.jfluidstructs.2006.09.007.
  • Lagarrigue V, Hermary J, Mauriès B. 2014. Qualification Of A Cryogenic Floating Flexible Hose Enabling Safe And Reliable Offshore LNG Transfer For Tandem FLNG Offloading Systems. Presented at the Offshore Technology Conference, Houston, 5-8 May 2014. Paper No. OTC-25413-MS. DOI: 10.4043/25413-MS.
  • Lagarrigue V, Landriere N. 2017. Trelleborg Survey report 2017; In: Trelleborg Report: Ed: Louise Smyth. Trelleborg, France. Available at: https://www.engineerlive.com/content/fluid-dynamics
  • Langkjaer. 2002. Assembly of an end-fitting and a flexible pipe. Patent 6412825, USA, 2002-07-02.
  • Lassen T, Eide AL, Meling TS. 2010. Ultimate Strength and Fatigue Durability of Steel Reinforced Rubber Loading Hoses. Proceedings of 29th International Conference on Ocean, Offshore and Arctic Engineering: Volume 5, Parts A and B. DOI:10.1115/omae2010-20236
  • Lassen T, Lem AI, Imingen G. 2014. Load Response and Finite Element Modelling of Bonded Loading Hoses. Proceedings of ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering, June 8–13, 2014, San Francisco, California, USA. Volume 6A, Paper No: OMAE2014-23545, V06AT04A034; pp. 1-17, https://doi.org/10.1115/OMAE2014-23545
  • Le Cunff C, Ryu S, Duggal A, Ricbourg C, Heurtier J-M, Heyl C, Liu Y, Beauclair O. 2007. “Derivation of CALM Buoy Coupled Motion RAOs In Frequency Domain And Experimental Validation.” Paper presented at the The Seventeenth International Offshore and Polar Engineering Conference, Paper Number: ISOPE-I-07-402, Accession Number: 2007-JSC-594, pp.1–8; Lisbon, Portugal, July 1-6, 2007. Available at: https://www.sofec.com/wp-content/uploads/white_papers/2007-ISOPE-Derivation-of-CALM-Buoy-Coupled-Motion-RAOs-in-Frequency-Domain.pdf Accessed on: 22nd January, 2022.
  • Lebon L, Remery J. 2002. Bonga: Oil Off-loading System using Flexible Pipe. In: Offshore Technology Conference Proceeding -OTC 14307. May 6–9, 2002, Houston, Texas, USA: OnePetro, pp. 1–12. https://doi.org/10.4043/14307-MS
  • Lee CH, Kim HW, Oh JW, Hong S. 2015a. A Study of Dynamic Analysis for Deep-seabed Integrated Mining System using Subsystem Synthesis Method. ECCOMAS Thematic Conference on Multibody Dynamics June 29 - July 2, 2015, Barcelona, Catalonia, Spain. Available at: http://congress.cimne.com/multibody2015/admin/files/fileabstract/a211.pdf
  • Lee C-H, Hong S, Kim H-W, Kim S-S. 2015b. A comparative study on effective dynamic modeling methods for flexible pipe. J Mech Sci Technol. 29(7):2721–2727. doi:10.1007/s12206-015-0520-4.
  • Lee G-C, Kim E, Cho H, Sim B, jae-Hoon K. 2011a. A Study of the Life Characteristic of Hydraulic Hose Assembly by Adopting Temperature-Nonthermal Acceleration Model. Journal of Applied Reliability, 11(3):235–244. Available at: https://www.koreascience.or.kr/article/JAKO201136151483093.pdf
  • Lee G-C, Kim H-E, Park J-W, Jin H-L, Lee Y-S, Kim J-H. 2011b. An experimental study and finite element analysis for finding leakage path in high pressure hose assembly. Int J Precis Eng Manuf. 12(3):537–542. doi:10.1007/s12541-011-0067-y.
  • Longmore DK, Schlesinger A. 1991. Transmission of vibration and pressure fluctuations through hydraulic hoses. Proc Inst Mech Eng Part I J Syst Control Eng. 205(2):97–104. doi:10.1243/pime_proc_1991_205_319_02.
  • Løtveit SA, Muren J, Nilsen-Aas C. 2009. Bonded Flexibles–State of the Art Bonded Flexible Pipes; Report Number 26583U-1161480945-354, Revision2.0, Approved on 17.12.2018; PSA: Asker, Norway, 2018; pp. 1–75. Available online: https://www.ptil.no/contentassets/cc69bb9245ca41dfab2e3e635f22f58b/report-on-bonded-flexible-pipes2009.pdf Retrieved on 21st December, 2021.
  • Løtveit SA. 2018. State of the art Bonded Flexible Pipes 2018: 1255 PSA Norway- Bonded flexibles. 4Subsea AS, Asker, Norway. Report Number 26583U-1161480945-354, Revision 2.0. Available at: https://www.4subsea.com/wp-content/uploads/2019/01/PSA-Norway-State-of-the-art-Bonded-Flexible-Pipes-2018_4Subsea.pdf Retrieved on 21st December, 2021.
  • Lenci S, Callegari M. 2005. Simple analytical models for the J-lay problem. Acta Mech. 178(1–2):23–39. doi:10.1007/s00707-005-0239-x.
  • Li X, Jiang X, Hopman H. 2018a. A review on predicting critical collapse pressure of flexible risers for ultra-deep oil and gas production. Applied Ocean Research 80 (2018), 1-10. https://doi.org/10.1016/j.apor.2018.08.013
  • Li X, Jiang X, Hopman H. 2018b. Prediction of the critical collapse pressure of ultra-deep water flexible risers - a literature review. FME Transactions, Vol 46 (3), 306-312. https://doi.org/10.5937/fmet1803306L
  • Li Y, Shaojun L, Xiaozhou H. 2019. Research on reflux in deep-sea mining pump based on DEM-CFD. Mar Georesour Geotechnol. 38(6):744–752. doi:10.1080/1064119x.2019.1632995.
  • Li Y, Liu SJ, Li L. 2007. Dynamic Analysis of Deep-Ocean Mining Pipe System by Discrete Element Method. China Ocean Engineering. 21(1):175–185.
  • Li F-S, Kyriakjdes S. 1991. On the response and stability of two concentric, contacting rings under external pressure. Int J Solids Struct. 27(1):1–14. doi:10.1016/0020-7683(91)90141-2.
  • Lighthill J. 1979. waves and hydrodynamic loading. In Proc. 2nd. Int. Conf. Behavior of Offshore Structures (BOSS ‘79). London, pp. 1–40.
  • Lighthill J. 1986. Fundamentals concerning wave loading on offshore structures. J Fluid Mech. 173(1):667–681. doi:10.1017/s0022112086001313.
  • Lipski W. 2011. Mechanical Lined Pipe - Installation by Reel-Lay. Subsea 7 Presentation, UK. Available at: https://www.yumpu.com/en/document/view/26877695/mechanical-lined-pipe-installation-by-reel-lay-subsea-uk (Accessed on 2nd November, 2021).
  • Liu Y, Huang H, Gao H, Wu X. 2013. Modeling and boundary control of a flexible marine riser coupled with internal fluid dynamics. J Control Theory Appl. 11(2):316–323. doi:10.1007/s11768-013-1245-5.
  • Lu J, Ma F, Tan Z, Sheldrake T. 2008. Bent collapse of an unbonded rough bore flexible pipe. Proceedings of the 27th International Conference on Offshore Mechanics and Arctic Engineering. Paper No: OMAE2008-57063, pp. 27-31; https://doi.org/10.1115/OMAE2008-57063
  • Maclachlan. 1940. Hose and coupling structure. Patent 2219047, USA, 1940-10-22.
  • Maneschy R, Romanelli B, Butterworth C, Pedrosa J, Escudero C, Vargas T. 2015. Steel Catenary Risers (SCRs): From design to installation of the first Reel CRA lined pipes. Part II: Fabrication and installation. In: Offshore Technology Conference Proceeding. Houston, Texas, USA: OnePetro. https://doi.org/10.4043/25857-MS
  • Manouchehr S. 2012. A discussion of practical aspects of reeled flowline installation. Proceedings of the ASME 2012 31st International Conference on Ocean, Offshore and Arctic Engineering, OMAE2012, July 1-6, 2012, Rio de Janeiro, Brazil. Paper No. OMAE2012-83649.
  • ManuliRubber. 2021. Manuli Rubber Industries (MRI)- Mission and Overview. Manuli Rubber, Italy Available at: www.manulirubber.com (Accessed on 2nd November, 2021).
  • Mars WV, Fatemi A. 2001. “Experimental Investigation of Multiaxial Fatigue in Rubber”, 6th International Conference on Biaxial/Multiaxial Fatigue and Fracture, Lisboa.
  • Mars WV, Fatemi A. 2004. Observations of the constitutive response and characterization of filled natural rubber under monotonic and cyclic multiaxial stress states. J Eng Mater Technol. 126(1):19–28. doi:10.1115/1.1631432.
  • Mars WV, Fatemi A. 2005. Multiaxial fatigue of rubber: Part II: experimental observations and life predictions. Fatigue Fract Eng Mater Struct. 28(6):523–538. doi:10.1111/j.1460-2695.2005.00895.x.
  • Martins CA, Pesce CP, Aranha JAP. 2003. “Structural Behavior of Flexible Pipe Carcass During Launching,” ASME Paper No. OMAE2003- 37053.
  • Maslin E. 2014. Unmanned buoy concepts grow. Offshore Engineer, 1(05). Available at: http://www.oedigital.com/component/k2/item/5621-unmanned-buoy-concepts-grow.
  • Mauriès B. 2014. Development of an LNG Tandem Offloading System Using Floating Cryogenic Hoses - Breaking the Boundaries of LNG Transfer in Open Seas. Presented at the Offshore Technology Conference, 5-8 May 2014, Houston, USA. Paper No. OTC-25342-MS. https://doi.org/10.4043/25342-MS
  • Mayau D, Rampi L. 2006. Trelline— a New Flexible Deepwater Offloading Line (OLL). Paper presented at the The Sixteenth International Offshore and Polar Engineering Conference, San Francisco, California, USA, May 2006. Paper Number: ISOPE-I-06-127. Published: May 28 2006
  • McCormick, ME. 2010. Ocean Engineering Mechanics with applications, New York, USA: Cambridge University Press.
  • Milad M, Green S, Ye J. 2018. Mechanical properties of reinforced composite materials under uniaxial and planar tension loading regimes measured using a non-contact optical method. Compos Struct. 202:1145–1154. doi:10.1016/j.compstruct.2018.05.070.
  • Miller J, Chermak MA. 1997. Wire braid angle response characteristics in hydraulic hose. SAE Technical Paper 972706, SAE Trans. 106, 2, 107−126 https://doi.org/10.4271/972706
  • Mills D. 2000. Using rubber hose to enhance your pneumatic conveying process. Powder and Bulk Engineering, Issue 3, March 2000. Pages 79-97. Available at: https://www.powderbulk.com/wp-content/uploads/pdf/pbe_20000301_79.pdf
  • Minguez M, Clergue S, Van Kessel J, Bessière L, Pattedoie S, Renaud M, Skledar M, Lange F, Miller E, Masterton S. 2020. Water Intake Riser WIR – from design to installation, an example of complex structure requiring multi–disciplinary approach. In: Offshore Technology Conference, 04-07 May, Houston, Texas, USA. https://doi.org/10.4043/30708-MS
  • Morgan G, Lilly H. 1974. Transfer system for suboceanic oil production. US3834432A, USA, 10 September, 1974.
  • Morison JR, Johnson JW, Schaaf SA. 1950. The force exerted by surface waves on piles. J Pet Technol. 2(05):149–154. doi:10.2118/950149-g.
  • Motulsky HJ, Ransnas LA. 1987. Fitting curves to data using nonlinear regression: a practical and nonmathematical review. FASEB J 1(5):365–74.
  • MSCSoftware. 2021. Marc- Advanced Nonlinear Simulation Software. MSC Software, USA. Available at www.mscsoftware.com
  • Muller. 1941. Hose and coupling structure. Patent 2234350, USA, 1941-03-11.
  • Muller. 1949. Hose coupling. Patent 2473441, USA, 1949-06-14.
  • Mungall JCH, Garrett DL, Alexander CH. 1997. Marine steel catenary riser system. US5639187A, USA, 17 June, 1997.
  • Muren J. 2007. Failure modes, inspection, testing and monitoring. PSA Norway Report. Report Number D5996-RPT01-REV02. Available at: https://www.ptil.no/contentassets/a4c8365164094826a24499ef9f22742b/p5996rpt01rev02cseaflex_janmuren.pdf (Accessed on 2nd November, 2021).
  • Murphy, et al. 1979. Hose coupling. Patent 4143892, USA, 1979-03-13.
  • Mustoe GG, Hettelmaier HP, Chung JS. 1992. Assessment of dynamic coupled bending-axial effects for two-dimensional deep-ocean pipes by the discrete element method. International Journal of Offshore and Polar Engineering. 2(4):289–296.
  • Nagy T, Antal S, Boros A, Sergely ZI. 1999. High pressure hoses for the offshore oil industry. ‘Hochdruckschläuche in der Offshore Ölindustrie’. Presented at the DKG-Fachlagung ‘98, in Fulda. Kautschuk und Gummi Kunststoffe. 52(7):482-485. [In German Language]. Available at: https://www.researchgate.net/publication/291532602_High_pressure_hoses_for_the_offshore_oil_industry (Accessed on 2nd November, 2021).
  • Nakane. 1935. Flexible hose. Patent 1994587, USA, 1935-03-19.
  • Nandakumar BN, Hooper A, Hvide HJ. 2002. Cantenary anchor leg mooring buoy. US5651709A, USA, 20 June, 2002.
  • NationalArchives. 2021. Dunlop Ruber Company Limited. The National Archives, Vol. 74, London Metropolitan Archives: City of London. Available at: www.discovery,.nationalarchives.gov.uk/details/r/ea550246-a341-4f78-9f52-cba3aa5bd69b (Accessed on 2nd November, 2021).
  • Neto AG, Martins C de A, Malta ER, Tanaka RL, Godinho CAF. 2016. Simplified finite element models to study the dry collapse of straight and curved flexible pipes. J Offshore Mech Arct Eng Trans ASME. 138(2):021701. doi:10.1115/1.4032156.
  • Neto AG, Martins CA, Malta ER, Tanaka RL, Godinho CAF. 2017. Simplified Finite Element Models to Study the Wet Collapse of Straight and Curved Flexible Pipes. ASME J Offshore Mech Arct Eng. 139(6):1–9.
  • Neto AG, Martins CA. 2014. Flexible pipes: influence of the pressure armor in the wet collapse resistance, J. Offshore Mech. Arct. Eng. 136 031401-1-8. Paper No: OMAE-11-1085 https://doi.org/10.1115/1.4027476
  • Neto AG, Martins CA. 2010. “Burst Prediction of Flexible Pipes,” Proceedings of the 29th International Conference on Offshore Mechanics and Arctic Engineering, 2010.
  • Neto AG, Martins CA. 2012. A Comparative Wet Collapse Buckling Study for the Carcass Layer of Flexible Pipes. ASME J Offshore Mech Arct Eng. 134(3):031701.
  • Neto AG, Martins C de A, Pesce CP, Meirelles COC, Malta ER, Neto TFB, Godinho CAF. 2013. Prediction of burst in flexible pipes. J Offshore Mech Arct Eng Trans ASME. 135(1):011401. doi:10.1115/1.4007046.
  • Newman JN. 1963. The motions of a spar buoy in regular waves, Report No. 1499, Virginia, USA.
  • Ning Y, Guang-Guo C, Da-Sheng T. 2011. Behavior of single particle and group particles in vertical lifting pipe in china. In: Proceedings of the Ninth ISOPE Ocean Mining Symposium. Maui, Hawaii, USA. p. 153–157.
  • Nooij S. 2006. Feasibility of IGW technology in offloading hoses. Delft University of Technology.
  • O’Brien P., et al. 2012. “Outcomes from the SureFlex Joint Industry Project—An International Initiative on Flexible Pipe Integrity Assurance”. Paper No. OTC 21524. Presented at: Offshore Technology Conference, Houston, USA.
  • O'Donoghe T, Halliwell AR. 1988. Floating Hose-Strings Attached to a CALM Buoy. In Offshore Technology Conference Proceeding - OTC 5717. Houston, Texas, USA: OnePetro, pp. 313–320
  • O’Donoghue T. 1987. The dynamic behaviour of a surface hose attached to a CALM buoy. PhD Thesis. Heriot-Watt University, Edinburgh. Offshore Engineering Department, UK, pp. 1-197. Available at: https://www.ros.hw.ac.uk/handle/10399/1045?show=full (Accessed on 22nd January, 2022).
  • O’Donoghue T, Halliwell AR. 1990. Vertical bending moments and axial forces in a floating marine hose-string. Eng Struct. 12(2):124–133. doi:10.1016/0141-0296(90)90018-n
  • O’Sullivan M. 2002. West of Africa CALM Buoy Offloading Systems. MCS Kenny Offshore Article. Technical Note for Flexcom-3D Version 5.5.2, MCS International, February 2002. Pages 1-3. Available at: https://pdf4pro.com/amp/cdn/west-of-africa-calm-buoy-offloading-systems-1c6034.pdf. (Accessed on 22nd January, 2022).
  • O’Sullivan M. 2003. Predicting interactive effects of CALM buoys with deepwater offloading systems. Offshore Magazine, 63(1): 16755731. Available at: https://www.offshore-mag.com/production/article/16755731/predicting-interactive-effects-of-calm-buoys-with-deepwater-offloading-systems (Accessed on 22nd January, 2022).
  • Obokata, J. 1987. On the basic design of single point mooring (1st Report)-Applications of the Dynamic Stability Analysis to the Primary Planning of the System. Journal of the Society of Naval Architects of Japan, 1987(161), pp.183–195.
  • Obokata J, Nakajima T. 1988. On the basic design of single point mooring system (2nd report) - Estimation of the Mooring Force. Journal of the Society of Naval Architects of Japan. (163):252–260.
  • OCIMF. 2009. Guide to Manufacturing and Purchasing Hoses for Offshore Moorings (GMPHOM). 5th Edition. Oil Companies International Marine Forum, Witherby Seamanship International Ltd, Livingstone, UK. Available at: https://www.ocimf.org/publications-advocacy/publications/books/guide-to-manufacturing-and-purchasing-hoses-for-offshore-moorings-gmphom
  • OCIMF. 2021. Guideline for the Handing, Storage, Use, Maintenance and Testing of the Hose, 1st Ed. London, UK: Witherby & Co. Ltd. Available at: https://ocimf.org/document-libary/359-guidelines-for-the-handling-storage-use-maintenance-and-testing-of-sts-hoses/file (Accessed on 22nd January, 2022).
  • OCIMF. 1995a. Guideline for the Handing, Storage, Inspection and Testing of the Hose, 2nd Ed. London, UK: Witherby & Co. Ltd.
  • OCIMF. 1995b. Single Point Mooring Maintenance and Operations Guide (SMOG). London, UK: Witherby & Co. Ltd.
  • Odijie AC. 2016. Design of Paired Column Semisubmersible Hull. PhD Thesis Lancaster University, Lancaster, UK Available at: https://doi.org/10.17635/lancaster/thesis/39.
  • Odijie AC, Wang F, Ye J. 2017a. A review of floating semisubmersible hull systems: Column stabilized unit. Ocean Eng. 144:191–202. doi:10.1016/j.oceaneng.2017.08.020.
  • Odijie AC, Quayle S, Ye J. 2017b. Wave induced stress profile on a paired column semisubmersible hull formation for column reinforcement. Eng Struct. 143:77–90. doi:10.1016/j.engstruct.2017.04.013.
  • Ogden RW. 1972. Large deformation isotropic elasticity – on the correlation of theory and experiment for incompressible rubberlike solids. Proc. R. Soc. Lond. A326565–584. http://doi.org/10.1098/rspa.1972.0026
  • Oh JW. et al. 2015. A study of integration framework for co-simulation with optimization design and multi-body dynamics. ECCOMAS Thematic Conference on Multibody Dynamics June 29 - July 2, 2015, Barcelona, Catalonia, Spain. Available at: http://congress.cimne.com/multibody2015/admin/files/fileabstract/a145.pdf
  • Oh J-W, Lee C-H, Hong S, Bae D-S, Cho H-J, Kim H-W. 2014. A study of the kinematic characteristic of a coupling device between the buffer system and the flexible pipe of a deep-seabed mining system. Int j nav archit ocean eng. 6(3):652–669. doi:10.2478/ijnaoe-2013-0203.
  • OIL. 2014. Floating & submarine hoses (EMSTEC)- OIL hoses brochure, Dudley, UK: Offspring International Limited.
  • OIL. 2015. Mooring and Offloading Systems, Dudley, UK: Offspring International Limited.
  • OIL. 2020. OIL Offloading Hoses Brochure. Offspring International Limited. Dudley, UK. Available at: https://www.offspringinternational.com/wp-content/uploads/2020/06/OIL-Offloading-Hoses-Brochure-2020-W.pdf
  • Oliveira MC. 2003. Ultradeepwater Monobuoys, OMAE2003-37103. In International Conference on Offshore Mechanics & Arctic Engineering. Cancun, Mexico: ASME, pp. 1–10.
  • Olufsen A, Nordsve NT, Karunakaran D. 1997. Riser. WO1997006341A1, USA, 20 February, 1997.
  • Orcina. 2014. OrcaFlex Manual, Version 9.8a, Ulverton, Cumbria, UK.
  • Orcina. 2019a. OrcaFlex version 10.3d. Software Technical Specification. Orcina Ltd, Ulverston, Cumbria.
  • Orcina. 2019b. OrcaFlex Version 10.3d Documentation, Orcina Ltd, Ulverton, Cumbria, UK. Available at: https://www.orcina.com/SoftwareProducts/OrcaFlex/Documentation/index.php.
  • Orcina. 2020a. Orcina Orcaflex, Retrieved from: http://www.orcina.com/SoftwareProducts/OrcaFlex/index.php, Accessed on 2019-12-22.
  • Orcina. 2020b. Vessel theory: RAOs and phases. Available at: https://www.orcina.com/webhelp/OrcaFlex10.3d Accessed 21st Mar. 2020
  • Padua MM, Goulart MP, Mastrangelo CF, Loureiro RR, Castro GAV, João LV, Maddalena MA. 2020. A journey of floating production systems in Brazil. In: Offshore Technology Conference, 4-7 May, Houston, Texas, USA. https://doi.org/10.4043/30554-MS
  • Païdoussis MP. 2014. Fluid-Structure Interactions: Slender Structures and Axial Flow 2nd Ed., Oxford, UK: Elsevier Ltd.
  • Panicker NN, Gentry LL, Moss HH. 1984. Marine compliant riser system. 03 January, 1984.
  • Pan B, Qian K, Xie H, Asundi A. 2009. Two-dimensional digital image correlation for in-plane displacement and strain measurement: a review. Meas Sci Technol. 20(6):062001. doi:10.1088/0957-0233/20/6/062001.
  • Papusha AN. 2015. Beam Theory for Subsea Pipelines: Analysis and Practical Applications, 1st Edition, Wiley-Scrivener and John Wiley & Sons, Inc., New Jersey, USA.
  • Patel MH, Seyed FB. 1995. Review of flexible riser modelling and analysis techniques. Eng Struct. 17(4):293–304. doi:10.1016/0141-0296(95)00027-5.
  • Paumier L, Averbuch D, Felix-Henry A. 2009, “Flexible Pipe Curved Collapse Resistance Calculation,” ASME Paper No. OMAE2009-79117 https://doi.org/10.1115/OMAE2009-79117
  • Patil S, Bagade R, Tamboli J. 2020. The effect of thermostatic test environment on the flexural fatigue performance of hydraulic hose assemblies. IOP Conf Ser Mater Sci Eng. 804(1):012001. doi:10.1088/1757-899x/804/1/012001.
  • Pavlou GD. 2013. Composite materials in piping applications. DEStech Publications Inc., Lancaster, Pennsylvania, USA. ISBN: 978-1-60595-0297
  • Pesce CP, Martins CA, Gay Neto A, Fujarra ALC, Takafuji FCM, Franzini GR, Barbosa T, Godinho CA. 2010. Crushing and wet collapse of flowline carcasses: A theoretical-experimental approach. In: 29th International Conference on Ocean, Offshore and Arctic Engineering: Volume 5, Parts A and B. ASMEDC. p. 521–529.
  • Pham D-C, Sridhar N, Qian X, Sobey AJ, Achintha M, Shenoi A. 2016. A review on design, manufacture and mechanics of composite risers. Ocean Eng. 112:82–96. doi:10.1016/j.oceaneng.2015.12.004.
  • Pham DC, Sridhar N, Qian X, Zhang W, Sobey A, Achinta M, Shenoi RA. 2015. Composite riser design and development – a review. In book: Analysis and Design of Marine Structures V, Chapter: 72. Publisher: CRC Press; Editors: Carlos Guedes Soares; R. Ajit Shenoi. March 2015 DOI: 10.1201/b18179-84
  • Picard D, Hudson W, Bouquier L, Dupupet G, Zivanovic I. 2007. Composite Carbon Thermoplastic Tubes for Deepwater Applications. In: OTC 19111. Offshore Technology Conference, 1–9.
  • Piccoli DE. 1976. Hose design for unusual hose applications. J Elastomers Plast. 8(4):403–413. doi:10.1177/009524437600800404.
  • Pierce RH. 1987. Composite marine riser system. Patent 4634314 A, USA, 6 January 1987.
  • Pierson WJ Jr., Moskowitz L. 1964. A proposed spectral form for fully developed wind seas based on the similarity theory of S. A. Kitaigorodskii. J Geophys Res. 69(24):5181–5190. doi:10.1029/jz069i024p05181.
  • Pinkster JA, Remery GFM. 1975. The role of Model Tests in the design of Single Point Mooring Terminals. In Offshore Technology Conference Proceeding -OTC 2212. Dallas, Texas, USA: OnePetro, pp. 679–702.
  • Poisson J-L, Lacroix F, Meo S, Berton G, Ranganathan N. 2011. Biaxial fatigue behavior of a polychloroprene rubber. Int J Fatigue. 33(8):1151–1157. doi:10.1016/j.ijfatigue.2011.01.014.
  • Policelli FJ. 1989. End connectors for filament wound tubes. Patent 4813715 A, USA, 21 March 1989.
  • Policelli FJ. 1993. Filament wound threaded tube connection. Patent 5233737 A, USA, 10 August 1993.
  • Potluri P, Thammandra VS. 2007. Influence of uniaxial and biaxial tension on meso-scale geometry and strain fields in a woven composite. Compos Struct. 77(3):405–18.
  • Prischi N, Mazuet F, Frichou A, Lagarrigue V. 2012. SS-offshore offloading systems and operations bonded flexible Oil Offloading Lines, A cost effective alternative to traditional Oil Offloading Lines. In: Paper presented at the Offshore Technology Conference, Houston, Texas, USA, April 2012. https://doi.org/10.4043/23617-MS
  • PSA. 2013. Un-bonded Flexible Risers – Recent Field Experience and Actions for Increased Robustness. 0389-26583-U-0032, Revision 5, Prepared by 4Subsea For PSA Norway. Available at: https://www.ptil.no/contentassets/c2a5bd00e8214411ad5c4966009d6ade/un-bonded-flexible-risers–recent-field-experience-and-actions–for-increased-robustness.pdf [Last accessed 17th June 2021.]
  • PSA. 2018. Bonded Flexibles – State of the art bonded flexible pipes. 0389-26583-U-0032, Revision 5, Prepared By 4Subsea For PSA Norway. Available at: https://www.4subsea.com/wp-content/uploads/2019/01/PSA-Norway-State-of-the-art-Bonded-Flexible-Pipes-2018_4Subsea.pdf [Last accessed 17th June 2021].
  • Quash JE, Brgess S. 1979. Improving underbuoy hose system design using relaxed storm design criteria. In Offshore Technology Conference Proceeding. pp. 1827–1836.
  • Quigley PA, Nolet SC, Williams JG. 2000. Composite spoolable tube. Patent 6016845, USA, 25 January 2000.
  • Ramos R Jr, Pesce CP. 2016. A consistent analytical model to predict the structural behavior of flexible risers subjected to combined loads. J Offshore Mech Arct Eng Trans ASME. 126(2):141–146. doi:10.1115/1.1710869.
  • Raheem SEA. 2013. Nonlinear response of fixed jacket offshore platform under structural and wave loads., 2(1):111–126.
  • Rahman M. 1981. Non-linear wave loads on large circular cylinders: a perturbation technique. Advances in Water Resources. 4(1):9–19.
  • Rahman M. 1984. Second order wave interaction with large structures. In: Rogers TBMC, editor. Wave Phenomena: Modern Theory and Applications. Holland: Elsevier B.V. p. 49–69.
  • Rampi L, Lavagna P, Mayau D. 2006. TRELLINE? A cost-effective alternative for oil offloading lines (OOLs). In: Paper presented at the Offshore Technology Conference, Houston, Texas, USA, May 2006. https://doi.org/10.4043/18065-MS
  • Rattensperger H, Eberhardsteiner J, Mang HA. 2003. Numerical investigation of high–pressure hydraulic hoses with steel wire braid. In: IUTAM Symposium on Computational Mechanics of Solid Materials at Large Strains. Dordrecht: Springer Netherlands. p. 407–416. https://doi.org/10.1007/978-94-017-0297-3_37
  • Remery GFM. 1981. Device for conveying a medium from means provided in a fixed position on a bottom below the water surface to a buoy body. US4279543A, USA, 21 July, 1981.
  • RenewablesUK. 2021. Wind energy statistics. Available at: https://www.renewableuk.com/page/UKWEDhome Accessed on: 9th May, 2021.
  • Rey V, Calvé OL. 2003. Experimental survey of the hydrodynamic performance of a small spar buoy. Appl Ocean Res. 24(6):309–320. doi:10.1016/s0141-1187(03)00026-9.
  • Ricbourg C, Berhault C, Camhi A, Lécuyer B, Marcer R. 2006. Numerical and experimental investigations on Deepwater CALM buoys hydrodynamics loads. In: Offshore Technology Conference Proceeding -OTC 18254 -PP. Houston, Texas, USA: OnePetro, pp. 1–8.
  • Richardson S. 2004. Big bore rubber hoses for marine and offshore applications. 2004. World Dredging, Mining and Construction, 40(8), August 2004, Pages 16. ISSN: 1045-0343
  • Roveri FE, Volnei L, Sagrilo S, Cicilia FB. 2002. A Case Study on the Evaluation of Floating Hose Forces in a CALM System. International Offshore and Polar Engineering Conference. 3:190–197.
  • Rudnick BP. 1967. Motion of a Large Spar Buoy in Sea Waves. J Sh Res. p. 257–267.
  • Ruiz MJG, Gonzalez LYS. 2006. Comparison of hyperelastic material models in the analysis of fabrics. Int J Cloth Sci Technol. 18:314–25.
  • Rychlik I. 1987. A new definition of the rainflow cycle counting method. Int J Fatigue. 9(2):119–121. doi:10.1016/0142-1123(87)90054-5.
  • Ryu S, Duggal AS, Heyl CN, Liu Y. 2006. Prediction of deepwater oil offloading buoy response and experimental validation. Int J Offshore Polar Eng. 16(3):1–7.
  • SAE. 2001. “Test and Test Procedures for SAE100R Series Hydraulic Hose and Hose Assemblies SAE J343,” SAE Standard REV Jul 2001.
  • SAE. 2008. “Hydraulic Hose,” SAE J517. Society of Automotive Engineers.
  • Sagrilo LVS, Siqueira MQ, Ellwanger GB, Lima ECP, Ferreira MDAS, Mourelle MM. 2000. A coupled approach for dynamic analysis of CALM systems. Appl Ocean Res. 24(1):47–58. doi:10.1016/s0141-1187(02)00008-1.
  • Saito H, Mochizuki T, Fukai T, Okui K. 1980. Actual measurement of external forces on marine hoses for SPM. In: Offshore Technology Conference Proceeding -OTC 3803. Houston, Texas, USA: OnePetro, pp. 89–97.
  • Salama MM., Mercier JA. 1987. Aramid composite well riser for deep water offshore structures. Patent 0244048A2, USA, 4 November 1987.
  • Salama MM, Spencer BE. 2010. Method of manufacturing composite riser. Patent 7662251B2, USA, 16 February 2010.
  • Sánchez SHA, Salas CC. 2006. “Risers Stability under External Pressure, Axial Compression and Bending Moment Considering the Welded as Geometrical Imperfection,” Proceedings of the 25th International Conference on Offshore Mechanics and Arctic Engineering, 2006.
  • Sanders JV. 1982. A three-dimensional dynamic analysis of a towed system. Ocean Eng. 9(5):483–499. doi:10.1016/0029-8018(82)90038-5.
  • Sao K, Member SK, Numata T. 1987. Basic Equation and SALM Buoy Motion - Analysis Method for Single Point Mooring (Report 1). Journal of the Society of Naval Architects of Japan, 1987(182), pp.257–266.
  • Sarpkaya T. 2014. Wave forces on offshore structures 1st ed., New York, USA: Cambridge University Press.
  • Sas-Jaworsky A. 1999. Composite coiled tubing end connector. Patent 5988702, USA, 23 November 1999.
  • Sas-Jaworsky A, Williams JG. 1994. Spoolable composite tubular member with integrated conductors. Patent 5285008, USA, 8 February 1994.
  • Saunders C, O’Sullivan T. 2007. Integrity management and life extension of flexible pipe. In: Offshore Europe, Society of Petroleum Engineers (SPE). Paper presented at the SPE Offshore Europe Oil and Gas Conference and Exhibition, Aberdeen, Scotland, U.K., September 4-7, 2007. https://doi.org/10.2118/108982-MS
  • SBMO. 2012. SBMO CALM Brochure, Amsterdam, The Netherlands: SBM Offshore. Aailable at: https://www.sbmoffshore.com/wp-content/uploads/2013/09/SBMO-CALM_Original_2048.pdf
  • SBMOffshore. 2011. SBM Offshore’s COOLTM LNG Marine Transfer Hose System externally certified for first application in the industry. Press release- SBM Offshore N.V., 22nd March, 2011. Available at: https://www.sbmoffshore.com/wp-content/uploads/2013/05/PressRelease-20110322_Original_541.pdf
  • Schirtzinger JF. 1969. Apparatus for loading and unloading offshore vessels. US3466680A, USA, 16 September, 1969.
  • Schrittesser B, Pinter G, Schwarz T, Kadar Z, Nagy T. 2016. Rapid Gas Decompression Performance of elastomers – A study of influencing testing parameters. Procedia struct integr. 2:1746–1754. doi:10.1016/j.prostr.2016.06.220.
  • Schram JW, Reyle SP. 1968. A three-dimensional dynamic analysis of a towed system. J hydronautics. 2(4):213–220. doi:10.2514/3.62793.
  • Selvadurai A. 2006. Deflections of a rubber membrane. J Mech Phys Solids;54(6):1093–119.
  • Serene CY, Chze LP. 2015. Subsea Condition Monitoring: Does Effective Diagnosis Increase Availability? Journal of Petroleum Technology (JPT). Published on November 30, 2015. Available at: https://jpt.spe.org/subsea-condition-monitoring-does-effective-diagnosis-increase-availability
  • Seyed FB, Patel MH. 1992. Mathematics of flexible risers including pressure and internal flow effects. Mar Struct. 5(2–3):121–150. doi:10.1016/0951-8339(92)90025-k.
  • Shabana AA, Yakoub RY. 2001. Three dimensional absolute nodal coordinate formulation for beam elements: Theory. J Mech Des N Y. 123(4):606–613. doi:10.1115/1.1410100.
  • Sherry Xiang, Peimin Cao, Richard Erwin and Steven Kibbee, OTEC Cold Water Pipe Global Dynamic Design For Ship-Shaped Vessels. OMAE2013-10927, Nantes, France, 2013.
  • Shotbolt K. 1988. Flexible riser system. US4793737A, USA, 27 December, 1988.
  • Simmons P. 1993. Composite threaded pipe connectors and method. Patent 5233737 A, USA, 10 August 1993.
  • Simonsen A. 2014. Inspection and monitoring techniques for unbonded flexible risers and pipelines. Masters Thesis, University of Stavanger, Norway.
  • Smyth L. 2017. Fluid dynamics. Lagarrigue & Landriere (2017). Engineer Live Magazine. Published on 1st Aug. 2017. Available at: https://www.engineerlive.com/content/fluid-dynamics
  • Sobrinho LL, Bastian FL, Materiais EDe, Cariri C, Janeiro RDe, Janeiro RDe. 2011. Composite tubes for riser application in deep water † †. 1–17.
  • SOFEC. 2021. About SOFEC mooring solutions & Fluid Transfer systems. Available at: www.sofec.com/about-sofec/ (Accessed on 2nd November, 2021).
  • SolentUniversity. 2021. Offshore oil and gas renewables. Solent University, Southampton, UK. Available at: https://maritime.solent.ac.uk/maritime-industry/offshore-renewable Accessed on 30th August, 2021.
  • Song H, Estep JW. 2006. Spoolable composite coiled tubing connector. Patent 7059881 B2, USA, 13 July 2006.
  • Sorensen RM. 2006. Basic Coastal Engineering 3rd ed., New York, USA: Springer.
  • Sorensen RM. 1993. Basic Wave Mechanics: For Coastal and Ocean Engineers, John Wiley and Sons.
  • Sousa JRM de, Magluta C, Roitman N, Ellwanger GB, Lima ECP, Papaleo A. 2009. On the response of flexible risers to loads imposed by hydraulic collars. Appl Ocean Res. 31(3):157–170. doi:10.1016/j.apor.2009.07.005.
  • Sparks CP. 2007. Fundamentals of Marine Riser Mechanics: Basic principles and simplified analyses. First Edition. PennWell Corporation, Tulsa, Oklahoma, USA.
  • Sparks CP. 2018. Fundamentals of Marine Riser Mechanics: Basic principles and simplified analyses. Second Edition. PennWell Corporation, Tulsa, Oklahoma, USA.
  • Stanton P. 2014. Dynamic Risers for Floating Production Systems API Standard 2RD Second Edition, September 2013.
  • Starita JM. 2005. Corrugated plastic pipe sections having flanged ends and structurally tight joints thereof. United States Patent 6938933, USA. 09/06/2005.
  • Stearns T de B. 1975. Computer simulation of underbuoy hoses. California State University, Northridge, USA; Thesis.
  • Stewart B. (2016). Single Point Mooring Global Dynamic Analysis OrcaFlex. Stewart Technologies Associates, STA, Houston, USA. Available at: https://www.youtube.com/watch?v=QY6gth4ryJM or https://stewart-usa.com/wp-content/uploads/2016/08/Single-Point-Mooring-Global-Dynamic-Analysis-OrcaFlex.pptx.mp4 (Accessed on: 26th February March, 2022).
  • Sun L, Zhang X, Kang Y, Chai S. 2015. Motion response analysis of FPSO’s CALM buoy offloading system. In: Volume 11: Robert F. Beck Prof. Honoring Symposium on Marine Hydrodynamics. American Society of Mechanical Engineers.
  • Sure Flex, et al. 2010. “State of the Art Report on Flexible Pipe Integrity and Guidance Note on Monitoring Methods and Integrity Assurance for Unbonded Flexible Pipes. Joint Industry Project - SureFlex, WGIM, MCS Kenny. Publisher: Oil and Gas UK. Available at www.oilandgasuk.co.uk, publications code: OP010.
  • Sweeney TE. 1977. The concept of an unmanned transatlantic sailing buoy (NOAA’s Ark), AMS Report No. 1358, New Jersey, USA.
  • Szabó G, Váradi K, Felhős D. 2017. Finite element model of a filament-wound composite tube subjected to uniaxial tension. Mod Mech Eng. 07(04):91–112. doi:10.4236/mme.2017.74007.
  • Szekely G, Peixoto E. 2018. Flexible hose technology benefits for ship-to-shore high pressure natural gas transfer. In: Offshore Technology Conference, 30 April - 3 May, Houston, Texas, USA. Paper OTC-28893-MS. https://doi.org/10.4043/28893-MS
  • Szekely G, Peixoto E, Czovek Z, Mezo T. 2017. Managed pressure drilling flexible mud return line advances. Society of Petroleum Engineers, IADC/SPE Managed Pressure Drilling & Underbalanced Operations Conference & Exhibition, 28-29 March, Rio de Janeiro, Brazil. https://doi.org/10.2118/185280-MS
  • Tang M, Lu Q, Yan J, Yue Q. 2016. Buckling collapse study for the carcass layer of flexible pipes using a strain energy equivalence method. Ocean Eng. 111:209–217. doi:10.1016/j.oceaneng.2015.10.057.
  • Technip, 2006. Coflexip® Flexible Steel Pipes for Drilling and Service Applications: User’ s Guide, Paris, France: Technip.
  • Terashima, et al. 1996. Reinforced rubber hose, Patent 5526848, USA, 1996-06-18.
  • ThomasNet. 2021. Durham Rubber & Belting Corp.- Company Profile. Available at: www.thomasnet.com/profile/00120500 (Accessed on 2nd November, 2021).
  • Timoshenko SP, Gere JM. 1961. Theory of Elastic Stability, McGraw Hill International Book Company, Inc., New York, USA.
  • Toh W, Tan LB, Jaiman RK, Tay TE, Tan VBC. 2018. A comprehensive study on composite risers: Material solution, local end fitting design and global response. Mar Struct. 61:155–169. doi:10.1016/j.marstruc.2018.05.005.
  • Tonatto MLP, Tita V, Amico SC. 2020. Composite spirals and rings under flexural loading: Experimental and numerical analysis. J Compos Mater. 54(20):2697–2705. doi:10.1177/0021998320902504.
  • Tonatto MLP, Tita V, Forte MMC, Amico SC. 2018. Multi-scale analyses of a floating marine hose with hybrid polyaramid/polyamide reinforcement cords. Mar Struct. 60:279–292. doi:10.1016/j.marstruc.2018.04.005.
  • Tonatto MLP, Roese PB, Tita V, et al. 2019. Offloading marine hoses: computational and experimental analyses. In book: Marine Composites, pp. 389–416. DOI: 10.1016/B978-0-08-102264-1.00014-5
  • Tonatto MLP, Tita V, Araujo RT, Forte MMC, Amico SC. 2017. Parametric analysis of an offloading hose under internal pressure via computational modeling. Mar Struct. 51:174–187. doi:10.1016/j.marstruc.2016.10.008.
  • Tonatto MLP, Forte MMC, Tita V, Amico SC. 2016a. Progressive damage modeling of spiral and ring composite structures for offloading hoses. Mater Des. 108:374–382. doi:10.1016/j.matdes.2016.06.124.
  • Tonatto MLP, Forte MMC, Amico SC. 2016b. Compressive-tensile fatigue behavior of cords/rubber composites. Polym Test. 61:185–190. doi:10.1016/j.polymertesting.2017.05.024.
  • Trelleborg. 2012. Reeline hoses Catalogue 2012. Available at: http://www2.trelleborg.com/Global/WorldOfTrelleborg/Fluid%20handling/REELINE_catalogue.pdf (Accessed on 2nd November, 2021).
  • Trelleborg. 2014. Trelline hoses Catalogue 2012. Available at: http://www2.trelleborg.com/Global/WorldOfTrelleborg/Fluid%20handling/TRELLINE%20Catalogue.pdf or http://www.irpc.com.co/docs/TRELLEBORG/TRELLEBORG%20TRELLINE%20HOSES%202012.pdf (Accessed on 2nd November, 2021).
  • Trelleborg. 2016. Oil & Gas Solutions: Oil & Gas Hoses for enhanced fluid transfer solutions, Clemont-Ferrand, France: Trelleborg.
  • Trelleborg. 2018. Oil & Marine Hoses: Innovation and Safety for Oil & Gas Transfer Systems. Trelleborg Brochure, Pages 1-30. Clemont-Ferrand, France: Trelleborg.
  • Trelleborg. 2020. Hose Design. Available at: https://www.trelleborg.com/en/fluidhandling/products–and–solutions/oil–and–marine/hose–design (Accessed on 2nd November, 2021).
  • Trelleborg. 2021. History- The Trelleborg Story. Trelleborg AB. Available at: www.trelleborg.com/en/about-us/history (Accessed on 2nd November, 2021).
  • Tschoepe EC, Wolfe GK. 1981. SPM Hose Test Program. In Offshore Technology Conference Proceeding - OTC 4015. Houston, Texas, USA: OnePetro, pp. 71–80.
  • Urdshals KAB, Hvide JH, Hooper A. 1994. Single point mooring system employing a submerged buoy and a vessel mounted fluid swivel. US5288253A, USA, 22 February, 1994.
  • van Diemen JG, Saint-Marcoux J-F, Otani L, Sahonero D, Trovoado LC. 2015. Displacing 10,000t of water to install 2,500t of steel buoy at 250m below sea level. In: Paper OTC-25887-MS presented at the Offshore Technology Conference, Houston, 4–7 May.
  • van Rhee C, Munts E, van den Bosch J, Lotman R, Heeren J. 2013. New developments in the simulation of slurry behaviour in spooled hoses for offshore mining applications. In: Offshore Technology Conference, 6–9 May, Houston, Texas, USA. Paper Number OTC-24082-MS. https://doi.org/10.4043/24082-MS
  • VHMarineTech. 2021. VH MarineTech- About Us. Available at: www.marine-flaotinghoses.com/about/ (Accessed on 2nd November, 2021).
  • Wang F, Lang Y, Li J, Luo Y. 2019. Innovations in a submarine piggyback pipeline project in the East China Sea. Proc Inst Civ Eng Civ Eng. 172(2):69–75. doi:10.1680/jcien.18.00010.
  • Wang Gang, Liu Shao-jun. 2005. Dynamic analysis on 3-D motions of deep-ocean mining pipe system for 1000-m sea trial [C]// Proceedings of the Sixth ISOPE Ocean Mining Symposium. Changsha, China, pp. 81−87.
  • Wang Zhi, Rao Qiu-hua, Liu Shao-jun. 2009. Interaction of fluid-solid coupled flexible hose and mining machine in deep-ocean mining system [C]// Proceedings of the Eighth ISOPE Ocean Mining Symposium. Chennai, India, pp. 263−269.
  • Wang Zhi, RAO Qiu-hua, Liu Shao-jun. 2011. Analysis of seabed-mining machine-flexible hose coupling in deep sea mining [C]// Proceedings of the Ninth ISOPE Ocean Mining Symposium. Maui, Hawaii, USA, pp. 143−148.
  • Wang G, Liu S-J, Li L. 2007. FEM modeling for 3D dynamic analysis of deep-ocean mining pipeline and its experimental verification. J Cent S Univ Technol. 14(6):808–813. doi:10.1007/s11771-007-0154-5.
  • Wang Y, Tuo H, Li L, Zhao Y, Qin H, An C. 2018. Dynamic simulation of installation of the subsea cluster manifold by drilling pipe in deep water based on OrcaFlex. J Pet Sci Eng. 163:67–78. doi:10.1016/j.petrol.2017.12.049.
  • Wang Z, Rao Q-H, Liu S-J. 2012. Fluid-solid interaction of resistance loss of flexible hose in deep ocean mining. J Cent S Univ. 19(11):3188–3193. doi:10.1007/s11771-012-1394-6.
  • Wang Y-L. 2015. Design of a cylindrical buoy for a wave energy converter. Ocean Eng. 108:350–355. doi:10.1016/j.oceaneng.2015.08.012.
  • Wang C, Shankar K, Ashraf MA, Morozov EV, Ray T. 2016. Surrogate-assisted optimisation design of composite riser. Proc Inst Mech Eng L J Mater Des Appl. 230(1):18–34. doi:10.1177/1464420714539304.
  • Wichers IJ. 2013. Guide to Single Point Moorings, Houston, USA: WMooring Inc.
  • Wilde. 2016. Structural analysis of new offloading reel design for FPSO vessels. Wilde Analysis & ContiTech Bettie. Available at: https://wildeanalysis.co.uk/resource/structural-analysis-new-offloading-reel-design-fpso-vessels/ [Last accessed 17th June 2021.]
  • Wilson JF. 2003. Dynamics of offshore structures. 2nd ed., New Jersey, USA: John Wiley and Sons.
  • WindEurope. 2021. Wind Energy Today. Available at: https://windeurope.org/ Accessed on: 31st August, 2021.
  • Winzen, et al. 1999. Connection between a building component and a pipe-shaped line element. Patent 5865475, USA, 1999-02-02.
  • Witz AJ, Cox DC, Hall GA, Ridolfi MV, Wort AJ, Smith RJA. 2011. Hose end fitting. Patent US8079619B2, USA.
  • Witz AJ, Cox DC. 2013. Improvements relating to hose. Patent US20100183371A1, USA.
  • Wu X, Ge F, Hong Y. 2012. A review of recent studies on vortex-induced vibrations of long slender cylinders. J Fluids Struct. 28:292–308. doi:10.1016/j.jfluidstructs.2011.11.010.
  • Xiangqian ZHU, Wan-Suk YOO. 2016. Numerical modeling of a spherical buoy moored by a cable in. three dimensions. 29:588–597.
  • Yamada K. 1987. Submarine conduit connection apparatus. GB2153332B, UK, 04 March, 1987.
  • Yang H, Liu S. 2018. Measuring method of solid-liquid two-phase flow in slurry pipeline for deep-sea mining. Thalassas: An International Journal of Marine Sciences. 34(2):459–469. doi:10.1007/s41208-018-0093-y.
  • Yeoh OH. 1993. Some forms of the strain energy function for rubber. Rubber Chemistry and Technology 66 (5): 754–771. https://doi.org/10.5254/1.3538343
  • Yokohama. 2016. Seaflex Yokohama Offshore loading & discharge hose, Hiratsuka City, Japan: The Yokohama Rubber Co. Ltd. Available at: https://www.y-yokohama.com/global/product/mb/pdf/resource/seaflex.pdf Accessed on: 31st August, 2021.
  • Yoon CH, Park YC, Park J. 2009. Solid-liquid flow experiment with real and artificial manganese nodules in flexible hoses [J]. International Journal of Offshore and Polar Engineering, 19(1): 77−79.
  • Young RA, Brogren EE, Chakrabarti SK. 1980. Behavior of loading hose models in laboratory waves and currents. In: Offshore Technology Conference; May 5-8; Houston, TX; p. 421-428. https://doi.org/10.4043/3842-MS
  • Yu K, Morozova EV, Ashrafa MA, Shankar K. 2015. Numerical analysis of the mechanical behaviour of reinforced thermoplastic pipes under combined external pressure and bending. Composite Structures. 131:453–461.
  • Yu K, Morozov EV, Ashraf MA, Shankar K. 2017. A review of the design and analysis of reinforced thermoplastic pipes for offshore applications. J Reinf Plast Compos. 36(20):1514–1530. doi:10.1177/0731684417713666.
  • Yun H-S, Kim S-S, Lee CH, Kim H-W. 2015. A study on the efficient flexible multibody dynamics modeling of deep seabed integrated mining system with subsystem synthesis method. Trans Korean Soc Mech Eng A. 39(12):1213–1220. doi:10.3795/ksme-a.2015.39.12.1213
  • Zeidler, et al. 1993. Pipe coupling. Patent 5257834, USA, 1993-11-02.
  • Zhang S-F, Chen C, Zhang Q-X, Zhang D-M, Zhang F. 2015. Wave loads computation for offshore floating hose based on partially immersed cylinder model of improved Morison formula. Open Pet Eng J. 8(1):130–137. doi:10.2174/1874834101508010130.
  • Zhi W. 2011. Analysis of seabed-mining machine-flexible hose coupling in deep sea mining //. In: Proceedings of the Ninth ISOPE Ocean Mining Symposium. Maui, Hawaii, USA. p. 143–148.
  • Zhu X, Yoo WS. 2016. Dynamic analysis of a floating spherical buoy fastened by mooring cables. Ocean Eng. 121:462–471. doi:10.1016/j.oceaneng.2016.06.009.
  • Zhou Y, Duan M, Ma J, Sun G. 2018. Theoretical analysis of reinforcement layers in bonded flexible marine hose under internal pressure. Eng Struct. 168:384–398. doi:10.1016/j.engstruct.2018.04.061.
  • Ziccardi JJ, Robbins HJ. 1970. Selection of Hose Systems for SPM Tanker Terminals. In: Offshore Technology Conference Proceeding -OTC 1152. Dallas (TX): OnePetro. p. 83–94.
  • Zine A, Benseddiq N, Naït Abdelaziz M. 2011. Rubber fatigue life under multiaxial loading: Numerical and experimental investigations. International Journal of Fatigue. 33(10):1360–1368. doi:10.1016/j.ijfatigue.2011.05.005.
  • Zhang D, Shi J, Si Y, Li T. 2019. Multi-grating triboelectric nanogenerator for harvesting low-frequency ocean wave energy. Nano Energy. 61:132–140. doi:10.1016/j.nanoen.2019.04.046.