Power performance and dynamic response of the WLC wave energy converter based on hydroelastic analysis

International Journal of Marine Energy - Tập 19 - Trang 83-94 - 2017
Constantine Michailides1
1Department of Civil Engineering and Geomatics, Cyprus University of Technology, 2-8 Saripolou, 3036 Limassol, Cyprus

Tài liệu tham khảo

Falnes, 2007, A review of wave-energy extraction, Marine Struct., 20, 185, 10.1016/j.marstruc.2007.09.001 Lund, 2007, Renewable energy strategies for sustainable development, Energy., 32, 912, 10.1016/j.energy.2006.10.017 Day, 2015, Hydrodynamic modeling of marine renewable energy devices: A state of the art review, Ocean Eng., 108, 46, 10.1016/j.oceaneng.2015.05.036 McCormick, 1981 Babarit, 2012, Numerical benchmarking study of a selection of wave energy converters, Renewable Energy., 41, 44, 10.1016/j.renene.2011.10.002 Babarit, 2015, A database of capture width ratio of wave energy converters, Renewable Energy., 80, 610, 10.1016/j.renene.2015.02.049 Drew, 2009, A review of wave energy converter technology, J. Power Energy., 223, 887, 10.1243/09576509JPE782 Falcão, 2010, Wave energy utilization: A review of the technologies, Renewable Sustainable Energy Rev., 14, 899, 10.1016/j.rser.2009.11.003 Falnes, 1999, Wave-energy conversion through relative motion between two single-mode oscillating bodies, J. Offshore Mech. Arctic Eng., 121, 32, 10.1115/1.2829552 Falnes, 2002 Falcão, 2008, Phase control through load control of oscillating-body wave energy converters with hydraulic PTO system, Ocean Eng., 35, 358, 10.1016/j.oceaneng.2007.10.005 Henderson, 2006, Design, simulation, and testing of a novel hydraulic power take-off system for the Pelamis wave energy converter, Renewable Energy, 31, 271, 10.1016/j.renene.2005.08.021 A. Babarit, A.H. Clement, J.C. Gilloteaux, Optimization and time-domain simulation of the SEAREV wave energy converter, In: Proc of 24th Int Conf Off Mech Arc Eng. 2 (2005) 703-712. Payne, 2008, Assessment of boundary-element method for modelling a free-floating sloped wave energy device. Part 1: Numerical modelling, Ocean Eng., 38, 333, 10.1016/j.oceaneng.2007.10.006 Michailides, 2012, Modeling of energy extraction and behavior of a Flexible Floating Breakwater, Appl. Ocean Res., 35, 77, 10.1016/j.apor.2011.11.004 Chakrabarti, 2004, Hydroelastic analysis of a floating carpet in waves, Trans. Built Environ., 71, 97 Newman, 1994, Wave Effects on Deformable Bodies, Appl. Ocean Res., 16, 47, 10.1016/0141-1187(94)90013-2 J.N. Newman, Wave effects on hinged bodies. Part I—body motions, 1997, http://www.wamit.com/publications.htm, (assess on 21.10.2014). Newman, 2001, Wave Effects on Multiple Bodies, 3 Lee, 2000, An assessment of hydroelasticity for very large hinged vessels, J. Fluids Struct., 14, 957, 10.1006/jfls.2000.0305 Fu, 2007, Hydroelastic analysis of flexible floating interconnected structures, Ocean Eng., 34, 1516, 10.1016/j.oceaneng.2007.01.003 Xia, 2000, On the hydroelastic behaviour of two-dimensional articulated plates, Marine Struct., 13, 261, 10.1016/S0951-8339(00)00028-9 Riyansyah, 2010, Connection design for two-floating beam system for minimum hydroelastic response, Marine Structures., 23, 67, 10.1016/j.marstruc.2010.01.001 Loukogeorgaki, 2012, Hydroelastic analysis of flexible mat-shaped floating breakwaters under oblique wave action, J. Fluids Struct., 31, 103, 10.1016/j.jfluidstructs.2012.02.011 J.N. Newman, Wave effects on hinged bodies. Part II—hinge loads, 1997, http://www.wamit.com/publications.htm, (assess on 21.10.2014). J.N. Newman, Wave effects on hinged bodies. Part III—hinge loads vs. number of modules, 1998, http://www.wamit.com/publications.htm, (assess on 21.10.2014). Michailides, 2013, Response analysis and optimum configuration of a modular floating structure with flexible connectors, Appl. Ocean Res., 43, 112, 10.1016/j.apor.2013.07.007 Yoon, 2014, Hydroelastic analysis of floating plates with multiple hinge connections in regular waves, Marine Struct., 36, 65, 10.1016/j.marstruc.2014.02.002 Lee, 1995 Senjanovic, 2008, Investigation of ship hydroelasticity, Ocean Eng., 35, 523, 10.1016/j.oceaneng.2007.11.008 Korde, 2003, Systems of reactively loaded coupled oscillating bodies in wave energy conversion, Appl. Ocean Res., 25, 79, 10.1016/S0141-1187(03)00044-0 Goda, 2000 Gomes, 2010, IPS Two-body Wave Energy Converter: Acceleration Tube Optimization, 20th Int Offshore and Polar Eng Conf, Beijing, China, ISOPE, 20, 834