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Reducing the compressibility of a lattice Boltzmann fluid using a repulsive force

机译:使用排斥力降低晶格玻尔兹曼流体的可压缩性

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This paper investigates the possibility to reduce the compressibility of lattice Boltzmann fluid models by introducing a repulsive force between nearest neighbor lattice Boltzmann particles. This new interaction is based on the Shan-Chen model. The interest of this approach is that it implements the physical mechanism responsible for the incompressibility of real fluids and retains the natural interpretation of the fluid density and fluid momentum. The new state equation shows that the compressibility factor decreases as the repulsive interaction increases. However, numerical instabilities limit the value of the acceptable repulsion. We investigate several situations, such as the Poiseuille flow with pressure gradient, a static fluid subject to gravity and the Womersley flow to evaluate the benefits of our approach. Globally, the compressibility of lattice Boltzmann fluids can be reduced by a factor of 4. [References: 9]
机译:本文研究了通过在最邻近的格子Boltzmann粒子之间引入排斥力来降低格子Boltzmann流体模型可压缩性的可能性。这种新的交互基于Shan-Chen模型。这种方法的兴趣在于,它实现了负责真实流体不可压缩性的物理机制,并保留了流体密度和流体动量的自然解释。新的状态方程表明,可压缩系数随着排斥相互作用的增加而降低。但是,数值不稳定性限制了可接受的斥力值。我们研究了几种情况,例如带有压力梯度的泊瓦流,受重力作用的静态流体和沃默斯利流,以评估我们方法的优势。在全球范围内,晶格玻尔兹曼流体的可压缩性可以降低4倍。[参考:9]

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