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Numerical and experimental investigation of sloshing in a water tank with a fully coupled fluid-structure interaction method

机译:具有完全耦合的流体 - 结构相互作用法的水箱中晃动的数值和实验研究

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摘要

In the present study, the harmonic movement of fluid flow and the behaviour of elastic structure under this movement are investigated. Accordingly, a recently developed fluid-structure interaction method in which fluid and structure are simulated with smoothed particle hydrodynamics (SPH) and finite element method (FEM) is used. The interaction between fluid and the structure is satisfied with the contact mechanics. In order to validate the numerical model under harmonic movement, different experiments are used. First, the structure is assumed to be rigid and the pressures calculated on the structure are compared with the experimental data available in the literature. Similarly, free-surfaces are also validated with novel experiments carried out in the context of this study. In addition, the interaction between an elastic structure and fluid is investigated in the novel experiments in which a water tank having an elastic buffer in the middle is moved under harmonic horizontal movement and the deflection of the elastic buffer and free-surface profiles are measured. Comprehensive results are given for all validation cases. According to the results, the numerical method is successful and can be used in these types of problems.
机译:在本研究中,研究了流体流动的谐波运动和在该运动下弹性结构的行为。因此,最近开发的流体 - 结构相互作用方法,其中使用平滑粒子流体动力学(SPH)和有限元方法(FEM)模拟流体和结构。流体与结构之间的相互作用对接触机构满意。为了在谐波运动下验证数值模型,使用不同的实验。首先,假设结构是刚性的,并且将结构计算的压力与文献中可用的实验数据进行比较。类似地,在本研究的背景下进行的新型实验也验证了自由表面。另外,在新的实验中研究了弹性结构和流体之间的相互作用,其中在中间的弹性缓冲器的水箱在谐波水平运动下移动,并测量弹性缓冲器和自由表面轮廓的偏转。所有验证案件给出了全面的结果。根据结果​​,数值方法是成功的,可用于这些类型的问题。

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