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Fluid-Structure Interaction Analysis of Hydrofoils in a Pulsating Flow

机译:脉动流中水翼的流固耦合分析

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The reduction of noise and vibration are very important in the design of hydrofoils. The current study focuses on establishing a theoretical and numerical model to investigate fluid-structure interaction caused by elastic hydrofoils in a pulsating flow. A fully coupled three dimensional boundary element method (BEM) and finite element method (FEM) code is applied to analyze the hydrodynamic performance. The numerical results show that the peak frequencies of the support reactions are related to the natural frequency of the hydrofoil. The natural frequencies and support reaction amplitudes are reduced significantly by including the fluid-structure coupling.
机译:在设计水翼时,降低噪音和振动非常重要。目前的研究重点是建立理论和数值模型,以研究由弹性水翼在脉动流中引起的流固耦合。应用了完全耦合的三维边界元法(BEM)和有限元法(FEM)代码来分析流体动力性能。数值结果表明,载体反应的峰值频率与水翼的固有频率有关。通过包括流固耦合,固有频率和支持反应振幅会大大降低。

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