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Benchmark hydroelastic responses of a circular VLFS under wave action

机译:波浪作用下圆形VLFS的基准水弹性响应

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This paper is concerned with the hydroelastic analysis of a pontoon-type circular very large floating structure (VLFS). The coupled fluid-structure interaction problem may be solved by using the modal expansion method in the frequency domain. It involves, firstly, the decomposition of the deflection of a circular Mindlin plate with free edges into vibration modes which can be obtained in an exact manner. Then the hydrodynamic diffraction and radiation forces are evaluated by using eigenfunction expansion matching method that is also done in an exact manner. The hydroelastic equation of motion is solved by the Rayleigh-Ritz method for the modal amplitudes, and then the modal responses are summed up to obtain the total response. The very accurate deflections and stress-resultants of uniform circular VLFSs presented herein are valuable as they serve as benchmark solutions to check the numerical methods for hydroelastic analysis of VLFSs.
机译:本文涉及浮船型圆形超大型浮式结构(VLFS)的水弹性分析。可以通过在频域中使用模态展开法来解决耦合的流固耦合问题。首先,它涉及将具有自由边缘的圆形Mindlin板的挠度分解为振动模式,可以精确地获得振动模式。然后,通过本征函数展开匹配方法对流体动力衍射和辐射力进行评估,该方法也以精确的方式进行。通过Rayleigh-Ritz方法求解模态振幅的水弹性运动方程,然后将模态响应求和以获得总响应。本文介绍的均匀圆形VLFS的非常精确的挠度和应力结果非常有价值,因为它们用作检查VLFS的水弹性分析数值方法的基准解决方案。

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