241
Views
1
CrossRef citations to date
0
Altmetric
Articles

A stochastic analysis approach for marine riser’s cross-flow/in-line VIV under heave-induced parametric vibration

, , , , &
Pages 952-972 | Received 26 Jul 2019, Accepted 08 Feb 2021, Published online: 04 Mar 2021

References

  • American Petroleum Institute. 1998. API RP 2RD design of risers for floating production systems (FPSs) and tension-leg platforms (TLPs). Washington, DC: API Publishing Services.
  • Aranha JA, Pinto MO. 2001. Dynamic tension in risers and mooring lines: an algebraic approximation for harmonic excitation. Appl Ocean Res. 23(2):63–81.
  • Blevins RD. 2001. Flow induced vibrations. 2nd ed. Malabar, FL: Krieger Publishing Company.
  • Cabrera-Miranda JM, Paik JK. 2018. Long-term stochastic heave-induced dynamic buckling of a top-tensioned riser and its influence on the ultimate limit state reliability. Ocean Eng. 149:156–169.
  • Chatjigeorgiou IK. 2004. On the parametric excitation of vertical elastic slender structures and the effect of damping in marine applications. Appl Ocean Res. 26(1):23–33.
  • Chen W, Li M, Guo S, Gan K. 2014. Dynamic analysis of coupling between floating top-end heave and riser’s vortex-induced vibration by using finite element simulations. Appl Ocean Res. 48:1–9.
  • Chen W, Li M, Zheng Z, Guo S, Gan K. 2015. Impacts of top-end vessel sway on vortex-induced vibration of the submarine riser for a floating platform in deep water. Ocean Eng. 99:1–8.
  • Facchinetti ML, De Langre E, Biolley F. 2004. Coupling of structure and wake oscillators in vortex-induced vibrations. J Fluid Struct. 19(2):123–140.
  • Fontaine E, Capul J, Rippol T, Lespinasse P. 2013. Experimental and numerical study of wake interference and clashing between steel catenary risers. J Offshore Mech Arct. 135(1):701–709.
  • Fu P, Leira BJ, Myrhaug D. 2018. The effect of local wake model on collision probability for risers subjected to current and random waves. Ocean Eng. 162:331–340.
  • Gustafsson Anton. 2012. Analysis of vortex-induced vibrations of risers [Master’s thesis]. Chalmers University of Technology.
  • He CJ. 2010. Experimental and numerical simulation on vortex-induced vibrations on flexible risers [PhD thesis]. Harbin University of industry. (In Chinese)
  • He JW, Low YM. 2013. Predicting the probability of riser collision under stochastic excitation and multiple uncertainties. J Offshore Mech Arct. 135(3):601–609.
  • Huarte FJH. 2006. Multi-mode vortex-induced vibrations of a flexible circular cylinder [PhD thesis]. University of London.
  • Huera-Huarte FJ, Bearman PW. 2009. Wake structures and vortex-induced vibrations of a long flexible cylinder—part 1: dynamic response. J Fluid Struct. 25(6):969–990.
  • Kang Z, Zhang C, Chang R. 2018. A higher-order nonlinear oscillator model for coupled cross-flow and in-line VIV of a circular cylinder. Ships Offshore Struc. 13(5-6):1–16.
  • Kuiper GL, Brugmans J, Metrikine AV. 2008. Destabilization of deep-water risers by a heaving platform. J Sound Vib. 310(3):541–557.
  • Kurushina V, Pavlovskaia E, Wiercigroch M. 2020. VIV of flexible structures in 2D uniform flow. Int J Eng Sci. 150:103211.
  • Lei S, Zhang WS, Lin JH, Yue QJ, Kennedy D, Williams FW. 2014. Frequency domain response of a parametrically excited riser under random wave forces. J Sound Vib. 333(2):485–498.
  • Lei S, Zhang W, Yue Q. 2010. Vortex-induced vibrations of risers due to FPDSO heave motions. ASME 2010 29th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers. 5:701–706.
  • Lei S, Zheng XY. 2016. Numerical analysis of the effects of parametric excitation on riser VIV. ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers 2:39–49.
  • Lei S, Zheng XY, Kennedy D. 2017. Dynamic response of a deepwater riser subjected to combined axial and transverse excitation by the nonlinear coupled model. Int J Nonlin Mech. 97(17):68–77.
  • Li XM, Guo HY, Meng FS. 2010. Nonlinear coupled in-line and cross-flow vortex-induced vibration analysis of top tensioned riser. China Ocean Eng. 24(4):749–758.
  • Low YM, Srinil N. 2016. VIV fatigue reliability analysis of marine risers with uncertainties in the wake oscillator model. Eng Struct. 106:96–108.
  • Madhavan Pillai TM, Meher Prasad A. 2000. Fatigue reliability analysis in time domain for inspection strategy of fixed offshore structures. Ocean Eng. 27(2):167–186.
  • Mazzilli CEN, Rizza F, Dias T. 2016. Heave-imposed motion in vertical risers: a reduced-order modelling based on Bessel-like modes. Procedia IUTAM. 19:136–143.
  • Nishi Y, Kokubun K, Hoshino K, Uto S. 2009. Quasisteady theory for the hydrodynamic forces on a circular cylinder undergoing vortex-induced vibration. J Mar Sci Technol. 14(3):285–295.
  • Prado FS, Sakamoto FY, Mazzilli CEN. 2014. An analysis of parametric instability of risers. Lat Am J Solids Stru. 11(3):348–368.
  • Song L, Fu S, Cao J, Ma L, Wu J. 2016. An investigation into the hydrodynamics of a flexible riser undergoing vortex-induced vibration. J Fluid Struct. 63:325–350.
  • Srinil N, Zanganeh H. 2012. Modelling of coupled cross-flow/in-line vortex-induced vibrations using double Duffing and van der Pol oscillators. Ocean Eng. 53:83–97.
  • Srinil N, Zanganeh H, Day A. 2013. Two-degree-of-freedom VIV of circular cylinder with variable natural frequency ratio: experimental and numerical investigations. Ocean Eng. 73:179–194.
  • Stahl B, Banon H. 2002. Fatigue safety factors for deepwater risers. ASME 2002 21st International Conference on Offshore Mechanics and Arctic Engineering. American Society of Mechanical Engineers.
  • Stappenbelt B. 2011. Vortex-induced motion of non-linear compliant low aspect ratio cylindrical systems. Int J Offshore Polar. 21(4):280–286.
  • Sun L, Liu CF, Zong Z, Dong XL. 2014. Fatigue damage analysis of the deepwater riser from VIV using pseudo-excitation method. Mar Struct. 37:86–110.
  • Sun L, Zong Z, Dong J, Dong GH, Liu CF. 2012. Stripwise discrete vortex method for VIV analysis of flexible risers. J Fluid Struct. 35:21–49.
  • Thorsen MJ, Sævik S, Larsen CM. 2016. Time domain simulation of vortex-induced vibrations in stationary and oscillating flows. J Fluid Struct. 61:1–19.
  • Wang Y, Gao D, Fang J. 2015b. Coupled dynamic analysis of deepwater drilling riser under combined forcing and parametric excitation. J Nat Gas Sci Eng. 27:1739–1747.
  • Wang K, Tang W, Xue H. 2015a. Time domain approach for coupled cross-flow and in-line VIV induced fatigue damage of steel catenary riser at touchdown zone. Mar Struct. 41:267–287.
  • Wang Z, Yang H. 2016. Parametric instability of a submerged floating pipeline between two floating structures under combined vortex excitations. Appl Ocean Res. 59:265–273.
  • Xiao F, Yang H. 2014. Probabilistic assessment of parametric instability of a top tensioned riser in irregular waves. J Mar Sci Technol. 19(3):245–256.
  • Xu Z, Chen Y, Zhang C, Li C, Wang Y, Hu F. 2014. Comparative study of a vertical round jet in regular and random waves. Ocean Eng. 89:200–210.
  • Xue H, Tang W, Qu X. 2014. Prediction and analysis of fatigue damage due to cross-flow and in-line VIV for marine risers in non-uniform current. Ocean Eng. 83:52–62.
  • Yang HZ, Wang ZQ, Xiao F. 2017. Parametric resonance of submerged floating pipelines with bi-frequency parametric and vortex-induced oscillations excitations. Ships Offshore Struc. 12(3):1–9.
  • Yang H, Xiao F. 2014. Instability analyses of a top-tensioned riser under combined vortex and multi-frequency parametric excitations. Ocean Eng. 81:12–28.
  • Yang H, Xiao F, Xu P. 2013. Parametric instability prediction in a top-tensioned riser in irregular waves. Ocean Eng. 70:39–50.
  • Yuan Y, Xue H, Tang W. 2018. A numerical investigation of vortex-induced vibration response characteristics for long flexible cylinders with time-varying axial tension. J Fluid Struct. 77:36–57.
  • Zhang JQ. 2009. Experimental investigation of vortex-induced vibration of long-deepwater marine risers [Master’s thesis]. Dalian University of Technology. (In Chinese)
  • Zhang X, Gou R, Yang W, Chang X. 2018. Vortex-induced vibration dynamics of a flexible fluid-conveying marine riser subjected to axial harmonic tension. J Braz Soc Mech Sci. 40(8):365.
  • Zhang J, Tang Y. 2015. Parametric instability analysis of deepwater top-tensioned risers considering variable tension along the length. J Ocean U China. 14(1):59–64.
  • Zhang H, Yang J, Xiao L, Lu H. 2013. Hydrodynamic performance of flexible risers subject to vortex-induced vibrations. J Hydrodyn. 25(1):156–164.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.