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首页> 外文期刊>Journal of Fluids and Structures >Development of a hybrid model based on mesh and meshfree methods and its application to fluid-elastic structure interaction for free surface waves
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Development of a hybrid model based on mesh and meshfree methods and its application to fluid-elastic structure interaction for free surface waves

机译:基于网格和网的混合模型的开发及其在自由表面波的流体 - 弹性结构相互作用的应用

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摘要

In this paper, a hybrid scheme, Fluid-Fluid-Elastic Structure (FFES) model was developed in the time domain to address the wave breaking impact on the structure. The model is developed based on the partitioned approach with different governing equations that describe various regions of the model domain. The fluid-fluid model denotes that two different fluid models were used to describe fluid in the actual physical domain. The method is a physics-based approximation to reduce the computational time, i.e. in the far-field inviscid fluid (fully nonlinear potential flow theory model), and near to the structure, viscous fluid (Navier Stokes model) is used. The coupled model then interacts with the elastic structure (based on Euler-Bernoulli beam theory). The system of equations is strongly coupled both in space and time. The Fluid-Fluid coupling uses an implicit predictor-corrector scheme, and the fluid-structure coupling works based on an iterative scheme. This approach makes the method more robust and for future extension. Three different possibilities for introducing the coupling was identified and implemented. The model was validated against results from the analytical solution and literature. The method proposed is a reliable, robust, and efficient alternative for simulating fluid-structure interaction problems. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文提出了一种混合方案,即流体-流体-弹性结构(FFES)时域模型,以解决波浪破碎对结构的影响。该模型基于分区方法开发,具有描述模型域不同区域的不同控制方程。流体模型是指在实际物理领域中,使用两种不同的流体模型来描述流体。该方法是一种基于物理的近似方法,以减少计算时间,即在远场无粘流体(完全非线性势流理论模型)中,在结构附近使用粘性流体(Navier-Stokes模型)。然后,耦合模型与弹性结构相互作用(基于Euler-Bernoulli梁理论)。方程组在空间和时间上都是强耦合的。流-液耦合采用隐式预测-校正方案,流-固耦合采用迭代方案。这种方法使该方法更加健壮,便于将来的扩展。确定并实施了引入耦合的三种不同可能性。根据解析解和文献的结果对模型进行了验证。该方法是模拟流固耦合问题的一种可靠、稳健、高效的方法。(C) 2020爱思唯尔有限公司版权所有。

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