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A coupled Finite Volume–Smoothed Particle Hydrodynamics method for incompressible flows

机译:不可压缩流动的有限体积-光滑颗粒流体动力学耦合方法

摘要

An hybrid approach is proposed which allows to combine Finite Volume Method (FVM) and Smoothed Particle Hydrodynamics (SPH). The method is based on the partitioning of the computational domain into a portion discretized with a structured grid of hexahedral elements (the FVM-domain) and a portion filled with Lagrangian particles (the SPH-domain), separated by an interface made of triangular elements. A smooth transition between the solutions in the FVM and SPH regions is guaranteed by the introduction of a layer of grid cells in the SPH-domain and of a band of virtual particles in the FVM one (both neighboring the interface), on which the hydrodynamic variables are obtained through suitable interpolation procedures from the local solutions. Several test cases are used in order to test the efficiency and accuracy of the proposed hybrid method, showing that a significant reduction in the computational efforts can be achieved with respect to the standard SPH method.
机译:提出了一种混合方法,该方法允许将有限体积法(FVM)与平滑粒子流体动力学(SPH)结合起来。该方法基于将计算域划分为由六面体元素的结构化网格离散的部分(FVM域)和填充有拉格朗日粒子的部分(SPH域),并由三角形元素制成的界面将其分开。通过在SPH域中引入一层网格单元并在FVM中引入一个虚拟粒子带(均与界面相邻),可以确保FVM和SPH区域中的解决方案之间的平滑过渡。变量是通过适当的内插程序从局部解中获得的。为了测试所提出的混合方法的效率和准确性,使用了几个测试用例,表明与标准SPH方法相比,可以大大减少计算量。

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