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A Modified Finite Particle Method: Multi-dimensional elasto-statics and dynamics

机译:一种改进的有限粒子方法:多维弹性静力学和动力学

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摘要

Particle methods are a class of numerical methods that belong to the family of meshless methods and are not based on an underlying mesh or grid, but rather on any general distribution of particles. They are nowadays widely applied in many fields, including, for example, solid mechanics, fluid dynamics, and thermodynamics. In this paper, we start from the original formulation of the so-called modified finite particle method (MFPM) and develop a novel formulation. In particular, after discussing the position of the MFPM in the context of the existing literature on meshless methods, and recalling and discussing the 1D formulation and its properties, we introduce the novel formulation along with its extension to the approximation of 2D and 3D differential operators. We then propose applications of the discussed methods to some elastostatic and elastodynamic problems. The obtained results confirm the potential and the flexibility of the considered methods, as well as their second-order accuracy, proposing MFPM as a viable alternative for the simulation of solids and structures.
机译:粒子方法是一类数值方法,属于无网格方法,并非基于基础网格或网格,而是基于粒子的任何一般分布。如今,它们被广泛应用于许多领域,包括例如固体力学,流体动力学和热力学。在本文中,我们从所谓的改进有限粒子法(MFPM)的原始公式出发,开发出一种新颖的公式。特别是,在现有无网格方法文献中讨论了MFPM的位置,并回顾和讨论了1D公式及其性质之后,我们介绍了新颖的公式及其对2D和3D微分算子逼近的扩展。 。然后,我们建议将讨论的方法应用于一些弹力和弹力问题。所获得的结果证实了所考虑方法的潜力和灵活性以及其二阶精度,因此建议将MFPM用作模拟实体和结构的可行替代方法。

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