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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Fluid structure interaction analysis of flexible beams vibrating in a time-varying fluid domain
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Fluid structure interaction analysis of flexible beams vibrating in a time-varying fluid domain

机译:时变流体域振动柔性梁的流体结构相互作用分析

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摘要

In this work, the transversal vibration of a submerged cantilever beam is studied with a time-varying fluid domain taken into consideration. The elastic beam is modeled using the Euler-Bernoulli beam theory, and the fluid is simplified by potential fluid theory. The governing equations of this fluid-structure interaction system are obtained using the mode superposition method and Galerkin's method. Then the influence of the time-varying fluid is investigated in detail, based on modal analysis and transient analysis. Time-frequency analysis is given for signal processing of the obtained response, as the frequencies are time-varying. The analytical results obtained in this paper show good agreement with numerical results by ANSYS and results in the previous study. This study reports a new phenomenon that changing of the fluid induces an additional nonstructural damping, which is proportional to the velocity of the depth changing of the fluid. The induced damping influences vibration of the beam significantly and must be taken into account in dynamic analysis of structures in a time-varying fluid.
机译:在这项工作中,研究了浸没式悬臂梁的横向振动,并考虑了时变的流体结构域。弹性光束采用Euler-Bernoulli光束理论建模,并且通过潜在的流体理论简化了流体。使用模式叠加法和Galerkin的方法获得该流体结构相互作用系统的控制方程。然后基于模态分析和瞬态分析,详细研究了时变流体的影响。作为所得响应的信号处理给出时频分析,因为频率是时变的。本文获得的分析结果与ANSYS的数值结果展示了良好的一致性,并在前面的研究中产生了结果。该研究报告了一种新的现象,即改变流体的诱导额外的非结构阻尼,这与流体的深度改变的速度成比例。感应阻尼影响光束的振动显着影响,并且必须考虑在时变液中结构的动态分析中。

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