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Experimental Research on A New Type of Floating Breakwater for Wave-Absorbing and Energy-Capturing 被引量:4

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摘要 To avoid the damage caused by big wind and wave in cage culture, and to solve the problem of energy supply faced by automatic breeding equipment, a new type of floating breakwater, named as Savonius double buoy breakwater(SDBB), is proposed in the paper. The floating breakwater is composed of HDPE cylindrical double buoys and horizontal axis Savonius rotors, and has the functions of wave-absorbing and energy-capturing. Based on the linear wave theory and energy conservation law, the Fourier Transform was applied to separate the two-dimensional wave frequency domain, and the energy captured by the rotors and absorbed by the floating breakwater were calculated.Experiments were conducted in a two-dimensional wave-making flume, and the transmitted waves at different wave heights and periods, the tension of mooring lines, and the rotational torque exerted on the Savonius rotor were measured. A series of performance comparison tests were also performed on the new floating breakwater and the traditional double-floating breakwater. Results show that the new floating breakwater is better than the traditional one in terms of reducing wave transmittance, and the combination of the floating breakwater with Savonius rotors can provide for marine aquaculture equipments with green power supply to a certain degree of self-sufficiency.
出处 《China Ocean Engineering》 SCIE EI CSCD 2020年第6期817-827,共11页 中国海洋工程(英文版)
基金 financially supported by the National Natural Science Foundation of China (Grant no. 51605431) Major Science and Technology Projects of Ningbo (Grant no. 2015C110015 and 2017C110005)。
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  • 1姚国权,麻志雄,丁炳灿.矩形浮式防波堤的改进试验研究[J].海洋工程,1992,10(3):33-42. 被引量:11
  • 2吴必军,吝红军,游亚戈,冯波,盛松伟.振荡型波浪能转换装置中两种优化方法研究[J].太阳能学报,2010,31(6):769-774. 被引量:12
  • 3胡嵋,李大鸣,秦崇仁.浅水区域浮箱式防波堤结构形式的试验研究[J].中国港湾建设,2007,27(5):38-41. 被引量:9
  • 4Bayram, A., 2000. Experimental study of a sloping float breakwater, Ocean Eng., 27(4): 445-453.
  • 5Behzad, M. and Akbari, M., 2007. Experimental investigation on response and efficiency of moored pontoon type floating breakwaters, Iranian Journal of Science & Technology, Engineering, 31(1): 95-99.
  • 6Brebner, A. and Ofuya, A. 0., 1968. Floating breakwaters, Proceedings of 11th Conference on Coastal Engineering, London, United Kingdom, 1055-1085.
  • 7Carr, J. H., 1951. Mobile breakwater, Proceeding of 2nd Conference on Coastal Engineering, Houston, Texas, 281-295.
  • 8Carver, R. D., 1979. Floating Breakwater Wave-Attenuation Tests for East Bay Marina, Olympia Harbor, Washington: Hydraulic Model Investigation, Technical Report HL79-13, U. S. Army Engineer Waterways Experiment Station, CE, Vicksburg, Mississippi.
  • 9Carver, R. D. and Davidson, D. D., 1983. Slopping floating breakwater model study, Proceeding of the Specialty Conference on Design Construction, Maintenance and Performance of Coastal Structures 83A, 417-432.
  • 10Dean, R. and Dalrymple, R. A., 1984. Wave Mechanics for Engineering and. Scientists, Prentice Hall, Inc., Englewood, Cliffs, New Jersey.

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