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首页> 外文期刊>Journal of Computational Physics >Accurate method for including solid-fluid boundary interactions in mesoscopic model fluids
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Accurate method for including solid-fluid boundary interactions in mesoscopic model fluids

机译:包括介于模型流体中的固体流体边界相互作用的准确方法

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摘要

Particle models are attractive methods for simulating the dynamics of complex mesoscopic fluids. Many practical applications of this methodology involve flow through a solid geometry. As the system is modeled using particles whose positions move continuously in space, one might expect that implementing the correct stick boundary condition exactly at the solid-fluid interface is straightforward. After all, unlike discrete methods there is no mapping onto a grid to contend with. In this article we describe a method that, for axisymmetric flows, imposes both the no-slip condition and continuity of stress at the interface. We show that the new method then accurately reproduces correct hydrodynamic behavior right up to the location of the interface. As such, computed flow profiles are correct even using a relatively small number of particles to model the fluid. (C) 2008 Elsevier Inc. All rights reserved.
机译:粒子模型是模拟复杂介质液体的动态的有吸引力的方法。 该方法的许多实际应用涉及通过实心几何形状流动。 由于系统使用其位置在空间中连续移动的颗粒进行建模,因此可以期望在固体流体接口处精确地实现正确的粘性边界条件是直截了当的。 毕竟,与离散方法不同,网格没有映射以抗争。 在本文中,我们描述了一种用于轴对称流量的方法,对界面处的缺陷条件和应力的连续性施加。 我们表明新方法然后准确地再现正确的流体动力行为直到界面的位置。 这样,即使使用相对少量的颗粒来模拟流体,计算的流程轮廓也正确是正确的。 (c)2008年elestvier Inc.保留所有权利。

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