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A particle numerical approach based on the SPH method for computational fluid mechanics

机译:一种基于SPH计算流体力学的粒子数值方法

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Meshfree methods have experienced an important improvement in the last decade. Actually, we can say that the emerging meshless technology constitutes the most promising tool to simulate complex problems in the fluid dynamics area. In this paper we present a formulation which combines a Lagrangian description of the fluid movement (following the spirit of Smoothed Particle Hydrodynamics and Vortex Particle Methods) with a Galerkin formulation and Moving Least-Squares approximation. The performance of the methodology proposed is shown through various dynamic simulations, demonstrating the attractive ability of particle methods to handle severe distortions and complex phenomena.
机译:Meshfree方法在过去十年中经历了重要的改进。实际上,我们可以说,新兴网格技术构成了模拟流体动力学区域中复杂问题的最有前途的工具。在本文中,我们提出了一种制剂,该制剂结合了利用Galerkin制剂和移动最小二乘近似的流体运动的拉格朗日描述(按照平滑的颗粒流体动力学和涡流颗粒方法的精神)。提出的方法的性能通过各种动态模拟显示,展示了处理严重扭曲和复杂现象的颗粒方法的吸引力。

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