The Computation of Stiff and Elastic Features of Structures with Time Domain Analysis

F. Kara
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Abstract

Hydroelasticity of marine structures with and without forward speed is studied directly using time dependent Boundary Integral Equation Method with Neumann-Kelvin linearisation where the potential is considered as the impulsive velocity potential. The exciting and radiation hydrodynamic parameters are predicted in time with transient wave Green function whilst the structural analysis is solved with Euler-Bernoulli beam method at which modeshapes are defined analytically. The modal analysis is used to approximate the hydroelasticbehaviour of the floating systems through fully coupling of the structural and hydrodynamic analyses. As it is expected, it is found with numerical experience that the effects of the rigid body modes are greater than elastic modes in the case of stiff structures. The predicted numerical results of the present in-house computational tool ITU-WAVE are compared with experimental results for validation purposes and show the acceptable agreements.
用时域分析方法计算结构的刚度和弹性特性
采用诺伊曼-开尔文线性化的时变边界积分方程方法,直接研究了有和没有前进速度时海洋结构的水弹性,将其势视为脉冲速度势。用瞬态波格林函数及时预测了激励和辐射水动力参数,用解析定义模态的欧拉-伯努利梁法求解了结构分析。通过结构分析和水动力分析的充分耦合,采用模态分析来近似浮动体系的水弹性行为。数值经验表明,对于刚性结构,刚体模态的影响大于弹性模态的影响。为了验证目的,将现有内部计算工具ITU-WAVE的预测数值结果与实验结果进行了比较,并显示出可接受的一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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