光滑粒子流体力学
区域分解方法
流量(数学)
插值(计算机图形学)
雷诺数
机械
多边形网格
圆柱
楔形(几何)
数学
算法
几何学
湍流
物理
经典力学
有限元法
运动(物理)
热力学
作者
Francesco Ricci,Renato Vacondio,Angelantonio Tafuni
标识
DOI:10.1016/j.cma.2023.116500
摘要
A multi-resolution algorithm for weakly-compressible Smoothed Particle Hydrodynamics is hereby proposed. The approach chosen is based on a domain decomposition to subdivide the computational domain into regions with different resolutions. Each sub-problem is closed by appropriate Dirichlet boundary conditions that are enforced via buffer regions, populated by particles whose physical quantities are obtained by means of an interpolation over adjacent sub-domains. The algorithm has been implemented into the DualSPHysics open-source code and it has been tested and validated through a series of different study cases. The capability of the numerical scheme to simulate multiscale fluid flow has been demonstrated by solving the flow past a cylinder for a Reynolds number of 9,500 and a ratio between the largest and smallest particle size equal to 28. Furthermore, the proposed SPH multi-resolution algorithm can also be used for flow around moving objects, such as an oscillating cylinder in cross-flow, and free-surface flow, such as the simulation of a triangular wedge impacting on the free surface of a quiescent liquid.
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