365
Views
5
CrossRef citations to date
0
Altmetric
Articles

Hydroelastic response of floating elastic plate in the presence of vertical porous barriers

ORCID Icon, ORCID Icon & ORCID Icon
Pages 457-471 | Received 23 Feb 2020, Accepted 06 Oct 2020, Published online: 19 Nov 2020

References

  • Andrianov AI, Hermans AJ. 2006. Hydroelastic analysis of floating plate of finite draft. Appl Ocean Res. 28:313–325.
  • Balmforth NJ, Craster RV. 1999. Ocean waves and ice sheets. J Fluid Mech. 395:89–124.
  • Chen XJ, Wu YS, Cui WC, Jensen JJ. 2006. Review of hydroelasticity theories for global response of marine structures. Ocean Eng. 33(3–4):439–457.
  • Cheng Y, Zhai GJ, Ou J. 2014. Time-domain numerical and experimental analysis of hydroelastic response of a very large floating structure edged with a pair of submerged horizontal plates. Mar Struct. 39:198–224.
  • Chung H, Fox C. 2005. Transition conditions at the interface between floating plates. Proceedings of the 20th International Workshop on Water Waves and Floating Bodies (IWWWFB); May 29–Jun 1; Longyearbyen, Norway.
  • Chwang AT, Chan AT. 1998. Interaction between porous media and wave motion. Annu Rev Fluid Mech. 30(1):53–84.
  • Dai J, Wang CM, Utsunomiya T, Duan W. 2018. Review of recent research and developments on floating breakwaters. Ocean Eng. 158:132–151.
  • Fox C, Squire VA. 1991. Coupling between the ocean and an ice shelf. Ann Glaciol. 15, 101–108.
  • Fu S, Moan T, Chen X, Cui W. 2007. Hydroelastic analysis of flexible floating interconnected structures. Ocean Eng. 34:1516–1531.
  • Gao RP, Wang CM, Koh CG. 2013. Reducing hydroelastic response of pontoon-type very large floating structures using flexible connector and gill cells. Eng Struct. 52:372–383.
  • Hermans AJ. 2007. Free-surface wave interaction with a thick flexible dock or very large floating platform. J Eng Math. 58(1–4):77–90.
  • Karmakar D, Bhattacharjee J, Guedes Soares C. 2013. Scattering of gravity waves by multiple surface-piercing floating membrane. Appl Ocean Res. 39:40–52.
  • Karmakar D, Bhattacharjee J, Sahoo T. 2007. Expansion formulae for wave structure interaction problems with applications in hydroelasticity. Int J Eng Sci. 45:807–828.
  • Karmakar D, Bhattacharjee J, Sahoo T. 2009. Wave interaction with multiple articulated floating elastic plates. J Fluids Struct. 25(6):1065–1078.
  • Karmakar D, Guedes Soares C. 2012. Scattering of gravity waves by a moored finite floating elastic plate. Appl Ocean Res. 34:135–149.
  • Karmakar D, Guedes Soares C. 2015. Propagation of gravity waves past multiple bottom-standing barriers. J Offshore Mech Arct Eng. 137(1):011101-1-10.
  • Karmakar D, Sahoo T. 2005. Scattering of waves by articulated floating elastic plates in water of infinite depth. Marine Structure. 18(5–6):451–471.
  • Karmakar D, Sahoo T. 2006. Flexural gravity wavemaker problem-revisited. International Conference on Application of Fluid Mechanics in Industry and Environment, ISI, Kolkata, India, Fluid Mechanics in Industry and Environment, B.S Dandapat & B.S Majumder (Eds.), Research Publishing Services, Singapore, p. 285–291.
  • Kashiwagi M. 2000. Research on hydroelastic responses of VLFS: recent progress and future work. Int J Offshore Polar Eng. 10(2):81–90.
  • Khabakhpasheva TI, Korobkin AA. 2002. Hydroelastic behaviour of compound floating plate in waves. J Eng Math. 44(1):21–40.
  • Meylan MH, Squire VA. 1994. The response of ice floes to ocean waves. J Geophys Res. 99(C1):891–900.
  • Meylan MH, Squire VA. 1996. Response of a circular ice floe to ocean waves. J Geophys Res. 101(C1):8869–8884.
  • Mindlin RD. 1951. Influence of rotary inertia and shear on flexural motion of isotropic elastic plates. J Appl Mech (ASME). 18:31–38.
  • Namba Y, Ohkusu M. 1999. Hydroelastic behavior of floating artificial islands in waves. Int J Offshore Polar Eng. 9(1):39–47.
  • Ohkusu M, Namba Y. 2004. Hydroelastic analysis of a large floating structure. J Fluids Struct. 19:543–555.
  • Ohmatsu S. 2001. Numerical calculation method for the hydroelastic response of a pontoon-type very large floating structure close to a breakwater. J Mar Sci Technol. 5(4):147–160.
  • Ohmatsu S. 2005. Overview: research on wave loading and responses of VLFS. Marine Structures. 18(2):149–168.
  • Papaioannou I, Gao R, Rank E, Wang CM. 2013. Stochastic hydroelastic analysis of pontoon-type very large floating structures considering directional wave spectrum. Probab Eng Mech. 33:26–37.
  • Pardo ML, Iglesias G, Carral L. 2015. A review of very large floating structures (VLFS) for coastal and offshore uses. Ocean Eng. 109:677–690.
  • Praveen KM, Karmakar D, Guedes Soares C. 2018. Hydroelastic analysis of articulated floating elastic plate based on Timoshenko–Mindlin plate theory. Ships Offsh Struct. 13(S1):287–301.
  • Praveen KM, Karmakar D, Guedes Soares C. 2019a. Hydroelastic analysis of periodic arrays of multiple articulated floating elastic plate. Ships Offsh Struct. 15(3):280–295.
  • Praveen KM, Karmakar D, Guedes Soares C. 2019b. Influence of support conditions on the hydroelastic behaviour of floating thick elastic plate. J Mar Sci Appl. 18(3):295–313.
  • Praveen KM, Karmakar D, Guedes Soares C. 2020. Wave interaction with floating elastic plate based on Timoshenko-Mindlin plate theory. J Offshore Mech Arct Eng. 142:011601-1-15.
  • Praveen KM, Karmakar D, Nasar T. 2016. Hydroelastic analysis of floating elastic thick plate in shallow water depth. Perspectives in Science. 8:770–772.
  • Rao SS. 2007. Vibration of continuous systems. New York: Wiley.
  • Riyansyah M, Wang CM, Choo YS. 2010. Connection design for two floating beam system for minimum hydroelastic response. Mar Struct. 23:67–87.
  • Singla S, Martha SC, Sahoo T. 2018. Mitigation of structural responses of a very large floating structure in the presence of vertical porous barrier. Ocean Eng. 165:505–527.
  • Squire VA. 2007. Of ocean waves and sea-ice revisited. Cold Reg Sci Technol. 49:110–133.
  • Sturova IV. 2009. Unsteady behavior of an elastic articulated beam floating on shallow water. J Appl Mech Tech Phys. 50(4):589–598.
  • Tay ZY, Wang CM. 2012. Reducing hydroelastic response of very large floating structures by altering their plan shapes. Ocean Syst Eng. 2, 69–81.
  • Taylor RE, Ohkusu M. 2000. Green functions for hydroelastic analysis of vibrating free-free beams and plates. Appl Ocean Res. 22(5):295–314.
  • Timoshenko SP, Krieger SW. 1959. Theory of plates and shells. McGraw-Hill.
  • Venkateswarlu V, Karmakar D. 2019. Wave transformation due to barrier-rock porous structure placed on step-bottom. Ships Offsh Struct. 15(8):895–895.
  • Venkateswarlu V, Karmakar D. 2020. Wave motion over stratified porous absorber combined with seaward vertical barrier. Proc Inst Mech Eng, Part M: J Eng Marit Environ. 234(4):830–845.
  • Wang S, Karmakar D, Guedes Soares C. 2016. Hydroelastic impact of a horizontal floating plate with forward speed. J Fluids Struct. 60:97–113.
  • Watanabe E, Utsunomiya T, Kuramoto M, Ohta H, Torii T, Hayashi N. 2003. Wave response analysis of VLFS with an attached submerged plate. Int J Offshore Polar Eng. 13(03):190–197.
  • Watanabe E, Utsunomiya T, Wang CM. 2004. Hydroelastic analysis of pontoon-type VLFS: a literature survey. Eng Struct. 26:245–256.
  • Xia D, Kim J, Ertekin R. 2000. On the hydroelastic behaviour of two dimensional articulated plates. Marine Structures. 13(4–5):261–278.
  • Yu X, Chwang AT. 1994. Wave motion through porous structures. J Eng Mech. 120(5):989–1008.
  • Zhao C, Hao X, Liang R, Lu J. 2015. Influence of hinged conditions on the hydroelastic response of compound floating structures. Ocean Eng. 101:12–24.

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.