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首页> 外文期刊>Journal of Fluid Science and Technology >Immersed Boundary-Finite Difference Lattice Boltzmann Method for Liquid-Solid Two-Phase Flows
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Immersed Boundary-Finite Difference Lattice Boltzmann Method for Liquid-Solid Two-Phase Flows

机译:固液两相流的浸入边界-有限差分格子Boltzmann方法

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摘要

An immersed boundary method based on a finite difference lattice Boltzmann method (IB-FDLBM) is presented. The FDLBM solves the discrete Boltzmann equation including an additional collision term by using finite difference schemes. The additional term works as a negative viscosity in the macroscopic level and allows us to alter the fluid viscosity while keeping the other relevant parameters of the simulation fixed. The immersed boundary method employs a direct-forcing method, which utilizes external forces at Lagrangian points embedded on immersed boundaries to impose the no-slip boundary condition. Several benchmark simulations are carried out to validate the developed method, i.e., flows past a circular cylinder, a falling particle, and interaction between two falling particles. Couette flows between a stationary and a rotating cylinder are also simulated at various values of the relaxation time for collision. The main conclusions obtained are as follows: (1) steady flows past a stationary circular cylinder are well predicted, (2) the motions of particles falling through liquids predicted using IB-FDLBM quantitatively agree well with those obtained using immersed boundary methods based on the lattice Boltzmann equation (IB-LBM), (3) the developed method well predicts the interaction between two particles falling through a liquid, e.g., the drafting-kissing-tumbling motion, and (4) distortion of velocity fields in circular Couette flows at high relaxation times is removed by the additional collision term.
机译:提出了一种基于有限差分格子玻尔兹曼方法的浸入边界方法(IB-FDLBM)。 FDLBM通过使用有限差分方案求解包含附加碰撞项的离散Boltzmann方程。附加项在宏观水平上充当负粘度,并允许我们更改流体粘度,同时保持模拟的其他相关参数不变。浸入边界方法采用直接作用法,该方法利用嵌入在浸入边界上的拉格朗日点处的外力施加无滑移边界条件。进行了几个基准仿真以验证开发的方法,即流过圆柱体,下落的粒子以及两个下落的粒子之间的相互作用。在碰撞的弛豫时间的各种值下,还模拟了固定缸和旋转缸之间的Couette流。得出的主要结论如下:(1)可以很好地预测流经固定圆柱的稳定流,(2)IB-FDLBM所预测的流经液体的颗粒的运动与基于沉浸边界方法获得的颗粒在数量上非常吻合。格子Boltzmann方程(IB-LBM),(3)所开发的方法可以很好地预测掉落在液体中的两个粒子之间的相互作用,例如牵伸-亲吻-翻滚运动,以及(4)圆形库埃特流场中速度场的畸变高的松弛时间被附加的碰撞项所消除。

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