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Simulation and Experimental Study of Hydraulic Cylinder in Oscillating Float-Type Wave Energy Converter


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1. Boyle G. ed. (2004): Renewable Energy. Oxford University Press, May 2004. ISBN-10: 0199261784. ISBN-13: 9780199261789.Search in Google Scholar

2. Falcão A. F. D. O. (2010): Wave energy utilization: A review of the technologies. Renewable & Sustainable Energy Reviews, 14(3), 899-918.10.1016/j.rser.2009.11.003Search in Google Scholar

3. Lin Y., Bao J., Liu H., et al. (2015): Review of hydraulic transmission technologies for wave power generation. Renewable & Sustainable Energy Reviews, 50, 194-203.10.1016/j.rser.2015.04.141Search in Google Scholar

4. Ozkop E, Altas I H. Control, power and electrical components in wave energy conversion systems: A review of the technologies[J]. Renewable and Sustainable Energy Reviews, 2017, 67: 106-115..10.1016/j.rser.2016.09.012Search in Google Scholar

5. Drew B., Plummer A. R., Sahinkaya M. N. (2009): A review of wave energy converter technology. Proc. IMechE, Part A; Journal of Power and Energy, 223(8), 887-902.10.1243/09576509JPE782Search in Google Scholar

6. Falnes J. (2002): Ocean waves and oscillating systems: Linear interactions including wave-energy extraction. Cambridge University Press.10.1017/CBO9780511754630Search in Google Scholar

7. Falcão A. F. D. O. (2008): Phase control through load control of oscillating-body wave energy converters with hydraulic PTO system. Ocean Engineering, 35(3-4), 358-366.10.1016/j.oceaneng.2007.10.005Search in Google Scholar

8. Thomas G. P., Evans D. V. (1981): Arrays of three-dimensional wave-energy absorbers. Journal of Fluid Mechanics, 108, 67-88.10.1017/S0022112081001997Search in Google Scholar

9. Haren P., Mei C.-C. (1982): An array of Hagen‒Cockerell wave power absorbers in head seas. Applied Ocean Research, 4(1), 51-56.10.1016/S0141-1187(82)80021-7Search in Google Scholar

10. Falnes J. (2003): Ocean waves and oscillating systems: Linear interactions including wave-energy extraction. Applied Mechanics Reviews, 56(1), 286.10.1115/1.1523355Search in Google Scholar

11. Falcao A. F. D. O., Justino P. A. P., Henriques J. C. C., et al. (2009): Reactive versus latching phase control of a two-body heaving wave energy converter. European Control Conference. IEEE, 2009.10.23919/ECC.2009.7074980Search in Google Scholar

12. Lai W. B., Li D. T., Xie Y. H. (2019): Experimental and simulative study on Hydraulic Energy Grading Control System in the process of wave energy conversion. Journal of Computational and Theoretical Nanoscience, 16(9), 3683–3691.10.1166/jctn.2019.8366Search in Google Scholar

13. Li D, Li D, Li F, et al. (2013): Analysis of Floating Buoy of a Wave Power Generating Jack-Up Platform Haiyuan 1. Advances in Mechanical Engineering, 5: 105072.10.1155/2013/105072Search in Google Scholar

14. Newland D. E. (2013): Mechanical vibration analysis and computation. Courier Corporation.Search in Google Scholar

15. Ramana B. V. (2006): Higher Engineering Mathematics. Tata McGraw-Hill Education.Search in Google Scholar

16. Mach E. (2014): History and Root of the Principle of the Conservation of Energy. Cambridge University Press.10.1017/CBO9781107338746Search in Google Scholar

17. McCormick M. E. (2013): Ocean wave energy conversion. Courier Corporation.Search in Google Scholar

eISSN:
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Language:
English
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Engineering, Introductions and Overviews, other, Geosciences, Atmospheric Science and Climatology, Life Sciences