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An isogeometric FE-BE method and experimental investigation for the hydroelastic analysis of a horizontal circular cylindrical shell partially filled with fluid

机译:水平圆柱形壳体部分填充流体的水平圆形圆柱壳的水液分析实验研究

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摘要

In this study, the dynamic characteristics (i.e. natural frequencies and associated mode shapes) of a partially filled horizontal cylindrical shell are investigated experimentally and by an isogeometric finite element-boundary element method. The proposed numerical procedure is divided into two parts. In the first part, the dynamic characteristics of the cylindrical shell under in-vacuo conditions are obtained by the isogeometric finite element method (IGAFEM) based on a linear Kirchhoff-Love shell formulation. In the second part, the fluid-structure interaction effects are calculated in terms of generalized added mass coefficients by using the isogeometric boundary element method (IGABEM), assuming that the structure vibrates in its in-vacuo principle mode shapes. By adopting the linear hydroelasticity theory, it is assumed that the fluid flow is ideal, i.e., an incompressible flow and inviscid fluid. In order to show the versatility of the numerical method, the results are compared with those obtained by the conducted experiments. Relevant numerical challenges in the hydroelastic vibration analysis are highlighted and it is shown that the numerical predictions and experimental results are in good agreement.
机译:在该研究中,通过实验研究了部分填充水平圆柱形壳体的动态特性(即自然频率和相关模式形状),并通过异射有限元 - 边界元件方法研究。所提出的数值程序分为两部分。在第一部分中,基于线性Kirchhoff-Love壳制剂的异诊测量有限元方法(IGAFEM)获得了真空条件下的圆柱形壳体的动态特性。在第二部分中,假设结构在其真空原理模式形状中振动,就通过异常边界元素方法(IGABEM)来计算流体结构相互作用效应。通过采用线性水力弹性理论,假设流体流是理想的,即不可压缩的流动和缺陷液。为了显示数值方法的多功能性,将结果与通过进行的实验获得的结果进行比较。突出显示液压弹性振动分析中的相关数值挑战,并显示了数值预测和实验结果良好。

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