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Application of Lattice Boltzmann Method to Flows in Microgeometries

机译:格子Boltzmann方法在微几何中的应用

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In the present investigation, Lattice Boltzmann Method (LBM) is used to simulate rarefied gaseous microflows in three microgeometries. These are micro-couette, micro lid-driven cavity and micro-poiseuille flows. The Knudsen number is used to measure the degree of rarefaction in the microflows. First, micro-couette flow is computed with the effects of varying Knudsen number in the slip and threshold of the transition regime and the results compare well with existing results. After having thus established the credibility of the code and the method including boundary conditions, LBM is then used to investigate the micro lid-driven cavity flow with various aspect ratios. Simulation of microflow not only requires an appropriate method, it also requires suitable boundary conditions to provide a well-posed problem and unique solution. In this work, LBM and three slip boundary conditions, namely, diffuse scattering boundary condition, specular reflection and a combination of bounce-back and specular reflection is used to predict the micro lid-driven cavity flow fields. Then the LBM simulation is extended to micro-poiseuille flow. The results are substantiated through comparison with existing results and it is felt that the present methodology is reasonable to be employed in analyzing the flow in micro-systems.
机译:在本研究中,格子Boltzmann方法(LBM)用于模拟三种微几何形状中稀有气体微流。这些是微型轿跑车,微型盖子驱动的空腔和微型泊流。克努森数用于测量微流中的稀疏度。首先,通过在过渡状态的滑移和阈值中改变努氏数的影响来计算微couette流,并将结果与​​现有结果进行比较。在确定了代码和包括边界条件的方法的可信度之后,便使用LBM来研究具有各种纵横比的微盖驱动腔流动。模拟微流不仅需要适当的方法,而且还需要适当的边界条件以提供适当解决的问题和独特的解决方案。在这项工作中,LBM和三个滑动边界条件,即扩散散射边界条件,镜面反射以及回弹和镜面反射的组合被用来预测微盖驱动的腔流场。然后,LBM模拟扩展到微泊流。通过与现有结果进行比较来证实结果,并认为本方法可合理地用于分析微系统中的流量。

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