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首页> 外文期刊>International Journal of Multiphase Flow >Galilean invariance in the lattice-Boltzmann method and its effect on the calculation of theological properties in suspensions
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Galilean invariance in the lattice-Boltzmann method and its effect on the calculation of theological properties in suspensions

机译:格-玻尔兹曼方法中的伽利略不变性及其对悬浮液流变性能的影响

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摘要

The lattice-Boltzmann method(LBM)provides an efficient simulation technique for the study of particle suspensions.These simulations provide an important tool in elucidating the effect of suspended particles on the rheology of suspensions.The most common solid-fluid boundary condition used in the LBM is the bounce-back operation, and as such, the errors introduced by this operation to the dynamics of the particles and the calculation of relevant rheological quantities must be quantified.This paper derives the Galilean invariant term in the standard bounce-back operation and shows the effect of this error on the calculation of particle dynamics and stresslet.In particular, an error is found in the calculation of normal stresses that may be significant in magnitude compared with typical values found in suspensions of rigid spherical particles. A correction is proposed, and simulation results are shown that verify the original assessment and show the reduction of error when using the proposed correction.
机译:格子-玻尔兹曼法(LBM)为研究颗粒悬浮液提供了一种有效的模拟技术,这些模拟为阐明悬浮颗粒对悬浮液流变性的影响提供了重要的工具。 LBM是回弹操作,因此,必须量化该操作给粒子动力学和相关流变量的计算带来的误差。本文推导了标准回弹操作中的伽利略不变项,并且说明了该误差对粒子动力学和应力小波计算的影响,特别是在计算法向应力时发现了一个误差,该误差与刚性球形粒子悬浮液中的典型值相比可能在数量级上显着。提出了一种校正方法,并显示了仿真结果,该结果验证了原始评估并显示了使用所提出的校正方法时误差的减少。

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