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Influence of Gaps Between Multiple Floating Bodies on Wave Forces 被引量:24

Influence of Gaps Between Multiple Floating Bodies on Wave Forces
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摘要 The present study aims to give general hints about hydrodynamic interactions for water wave diffraction on a super large floating structure composed of a large number of box-shaped modules with many small gaps in between. And meanwhile, it also aims to seek for an effective way to take the gap influence into consideration without numerical difficulties existing in conventional methods. An asymptotic matching technique is exploited by virtue of the smallness of gaps. Formal potential solutions are established for the near field around the gap ends and the far field away from gap ends, respectively, and the unknowns in those solutions are uniquely determined by asymptotic matching. The eigen-function expansion method is used for the outer far field and a series of pulsating sources at each gap end is introduced to simulate the gap influence. Strong hydrodynamic interaction is observed and a new resonant phenomenon, the mechanism of which differs absolutely from any known ones, is revealed in the present study. Sharp peak responses for both vertical and horizontal wave-exciting forces on each block are found around some special resonance frequencies, which depend on the draft of the structure and the gap width. The present results are of practical significance to the design of links (connectors) of modules for super large floating structures. And the importance is also closely related to the hydro-elasticity analysis for super large floating structures, in which local loads may be as important as the integrated loads. The present study aims to give general hints about hydrodynamic interactions for water wave diffraction on a super large floating structure composed of a large number of box-shaped modules with many small gaps in between. And meanwhile, it also aims to seek for an effective way to take the gap influence into consideration without numerical difficulties existing in conventional methods. An asymptotic matching technique is exploited by virtue of the smallness of gaps. Formal potential solutions are established for the near field around the gap ends and the far field away from gap ends, respectively, and the unknowns in those solutions are uniquely determined by asymptotic matching. The eigen-function expansion method is used for the outer far field and a series of pulsating sources at each gap end is introduced to simulate the gap influence. Strong hydrodynamic interaction is observed and a new resonant phenomenon, the mechanism of which differs absolutely from any known ones, is revealed in the present study. Sharp peak responses for both vertical and horizontal wave-exciting forces on each block are found around some special resonance frequencies, which depend on the draft of the structure and the gap width. The present results are of practical significance to the design of links (connectors) of modules for super large floating structures. And the importance is also closely related to the hydro-elasticity analysis for super large floating structures, in which local loads may be as important as the integrated loads.
出处 《China Ocean Engineering》 SCIE EI 2000年第4期407-422,共16页 中国海洋工程(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.59879011 and 19732004) the Foundation of the Ministry of Education of China
关键词 super large floating structure wave interaction RESONANCE gap influence super large floating structure wave interaction resonance gap influence
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  • 1Miao Guo-ping, Yu Zhi-xingDept. of Naval Architecture and Ocean Engineering, Shanghai Jiaotong Univ. , Shanghai200030, P. R. ChinaMiao Quan-mingChina Ship Scientific Research Center, Wuxi 214082, P. R.ChinaLiu Ying-zhong, Zhang Huai-xinDept. of Naval Architecture and Ocean Engineering, Shanghai Jiaotong Univ. , Shanghai200030, P.R.China.ON HYDRODYNAMIC INTERACTION UPON THE WAVE FORCES ON VERTICAL PILE ARRAY[J].Journal of Hydrodynamics,1998,10(3):69-79. 被引量:1

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