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Experimental Study on 2-D Focusing Wave Run-up on A Vertical Cylinder 被引量:2

Experimental Study on 2-D Focusing Wave Run-up on A Vertical Cylinder
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摘要 In this paper,the focused wave groups with different parameters and their actions on a vertical cylinder are experimentally studied. The harmonic wave characteristics of the focusing waves are analyzed by the addition and subtraction of the crest and trough focusing waves. The analyzed results show that higher order harmonics can be generated because of the interaction of component waves. Nonlinearity increases with the inputted wave amplitude and the frequency width increment. Further, the wave run-up around the vertical circular cylinder is experimentally studied. It increases with the wave steepness and the relative cylinder diameter increase. However, the variations of wave run-up around the circular cylinder are different. The researches provide a reference for further numerical studies. In this paper,the focused wave groups with different parameters and their actions on a vertical cylinder are experimentally studied. The harmonic wave characteristics of the focusing waves are analyzed by the addition and subtraction of the crest and trough focusing waves. The analyzed results show that higher order harmonics can be generated because of the interaction of component waves. Nonlinearity increases with the inputted wave amplitude and the frequency width increment. Further, the wave run-up around the vertical circular cylinder is experimentally studied. It increases with the wave steepness and the relative cylinder diameter increase. However, the variations of wave run-up around the circular cylinder are different. The researches provide a reference for further numerical studies.
出处 《China Ocean Engineering》 SCIE EI 2010年第3期499-512,共14页 中国海洋工程(英文版)
基金 supported bythe National Natural Science Foundation of China (Grant Nos.50379002 and 50921001) the New Century Excellent Talents in University (Grant No.NCET-05-0282)
关键词 wave focusing NONLINEARITY vertical circular cylinder wave run-up wave focusing nonlinearity vertical circular cylinder wave run-up
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