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首页> 外文期刊>Journal of Scientific Computing >Numerical Simulation of Fluid-Structure Interaction Using Modified Ghost Fluid Method and Naviers Equations
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Numerical Simulation of Fluid-Structure Interaction Using Modified Ghost Fluid Method and Naviers Equations

机译:修正的Ghost流体法和Naviers方程对流固耦合的数值模拟

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In this work, we deal with the 1D compressible fluid coupled with elastic solid in an Eulerian-Lagrangian system. To facilitate the analysis, the Naviers equation for elastic solid is cast into a 2×2 system similar to the Euler equation but in Lagrangian coordinate. The modified Ghost Fluid Method is employed to treat the fluid-elastic solid coupling, where an Eulerian-Lagrangian Riemann problem is defined and a nonlinear characteristic from the fluid and a Riemann invariant from the solid are used to predict and define the ghost fluid states. Theoretical analysis shows that the present approach is accurate in the sense of approximating the solution of the Riemann problem at the interface. Numerical validation of this approach is also accomplished by extensive comparison to 1D problems (both water-solid and gas-solid) with their respective analytical solutions.
机译:在这项工作中,我们在欧拉-拉格朗日系统中处理与弹性固体耦合的一维可压缩流体。为便于分析,将弹性固体的Naviers方程强制转换为与Euler方程类似但在拉格朗日坐标中的2×2系统。修改后的Ghost流体方法用于处理流体弹性固体耦合,其中定义了Eulerian-Lagrangian Riemann问题,并使用流体的非线性特征和固体的Riemann不变量来预测和定义幻影流体状态。理论分析表明,在逼近界面处的黎曼问题的解的意义上,本方法是准确的。通过与一维问题(水固和气固)及其相应的分析解决方案进行广泛比较,也可以完成此方法的数值验证。

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