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减振板作用下的超大型浮体水弹性响应解析分析-港口、海岸及近海工程专义业毕业论文.docx

减振板作用下的超大型浮体水弹性响应解析分析-港口、海岸及近海工程专义业毕业论文.docx

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减振板作用下的超大型浮体水弹性响应解析分析-港口、海岸及近海工程专义业毕业论文

减振板作用下的超大型浮体水弹性响应解析分析Hydroelastic 减振板作用下的超大型浮体水弹性响应解析分析 Hydroelastic Response Analysis of VLFS Attached with Submerged Plates Abstract Very large floating structure(VLFS)has great value in taking advantage of ocean space and exploiting ocean resources,it has been a research hotspot in the domain of the ocean engineering.China Manufacture《2025)issued by the State Council of PRC,which demands quick development of VLFS technology.VLFS is an extremely flat and flexible structure. The structural vibrations and fluid motion must be coupled together using hydroelastic theory analysis.Based on the potential theory,the eigenfunction expansion matching method is applied to analyse hydroelastic response ofVLFS attached with submerged plates. Applying Euler beam theory,potoons type VLFS is simplified as a two-dimensional elastic beam.To solve fluid problem,the unified system consisted of VLFS and fluid is divided into several regions.The eigenfunction expansion method and the mode function expansion method are employed to solve the velocity potential.Radiation potential coefficient and diffraction potential coefficient are obtained by solving the equations based on continuity conditions that velocity potential and velocity are equal along the boundary of different regions,then the velocity potential is abtained.To solve the structure problem,the vibration differential equation of two.dimensional elastic beam is adopted to get the hydroelastic equation of motion of VLFS.Employing the velocity potential into the motion equation and solving the equation,the mode superposition method is used to calculate wave-induced response.The relevant computer codes are developed by Fortran programming.Comparing 、历th literature data.calculation results show that the analytical method and the program are validity and feasibility. A submerged horizontal plate attached at the fore—end of VLFS,which Can effectively mitigate hydroelastic response of VLFS at the fore—end and in the middle,but i

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