生物医学用双曲微通道的数值流动研究

Filipe Barbosa, Cristiano S. Abreu, Mónica S. A. Oliveira, Rui A. Lima, G. Minas
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引用次数: 0

摘要

基于网格的数值方法在微观尺度上模拟生物流体有一些局限性,因为它们不能代表生物流体的多相成分。相比之下,原子方法能够模拟具有多个相的流体,其中网格由相互作用的粒子代替。LAMMPS代码是一种经典的分子动力学模拟方法,经常用于评估粒子的流动动力学。本工作的主要目的是比较经典分子动力学(MD)与有限体积方法。因此,对于这两种类型的模拟,使用相同的牛顿流体来评估沿双曲收缩微通道的流动行为。两种方法在流速为0.22和1.00 ml/h时得到的应变速率吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical flows studies in a hyperbolic microchannel for biomedical applications
Mesh-based numerical methods have several limitations to simulate biofluids at a micro scale level, as they do not represent the multiphase component of them. In contrast, atomistic methods have the ability to simulate fluids with more than one phase, where the mesh is replaced by interacting particles. The LAMMPS code is a classical method of the molecular dynamics simulation, frequently used to assess the flow dynamics of particles. The main goal of this work is to compare the classical Molecular Dynamics (MD) with the finite volume method. Thus, for both type of simulations the same Newtonian fluid was used to assess the flow behavior along a hyperbolic contraction microchannel. The strain rate obtained for the flow rate of 0.22 and 1.00 ml/h have shown a good agreement between both methods.
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