首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >LATTICE BOLTZMANN METHOD FOR STEADY GAS FLOWS IN MICROCHANNELS WITH IMPOSED SLIP WALL BOUNDARY CONDITION
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LATTICE BOLTZMANN METHOD FOR STEADY GAS FLOWS IN MICROCHANNELS WITH IMPOSED SLIP WALL BOUNDARY CONDITION

机译:滑动壁边界条件有限的微通道内稳定气体流动的格子Boltzmann方法

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摘要

In this paper, we use a lattice Boltzmann method (LBM)for simulation of rarefied gas flows in microchannels at the slip flow regime. LBM uses D2Q9 lattice structure and BGK collision operator with single relaxation time. The solid wall boundary conditions used in this paper are based on the idea of bounceback of the non-equilibrium part of particle distribution in the normal direction to the boundary. The same idea is implemented at inlet and exit boundaries as well as at the wall surfaces. The distribution functions at the solid nodes are modified according to imposed density and slip velocity values at the wall boundaries. Simulation results are presented for microscale Couette and Poiseuille flows. The results are validated against analytical and/or experimental data for the slip velocity, nonlinear pressure drop and mass flow rate at various flow conditions. It was observed that the current application of LBM can accurately recover the physics of microscale flow phenomena in microchannels. The type of boundary treatment used in this study enables the implementation of coupled simulations where the flow properties at the regions near the wall can be obtained by other numerical methods such as the Direct Simulation Monte Carlo method (DSMC).
机译:在本文中,我们使用晶格玻尔兹曼法(LBM)来模拟滑流状态下微通道中稀薄气体的流动。 LBM使用D2Q9晶格结构和具有单个弛豫时间的BGK碰撞算子。本文中使用的固体壁边界条件是基于粒子分布的非平衡部分在边界法线方向上反弹的想法。在入口和出口边界以及壁表面都实现了相同的想法。根据在壁边界处施加的密度和滑移速度值来修改实体节点处的分布函数。给出了微型Couette和Poiseuille流动的仿真结果。根据分析和/或实验数据验证了滑移速度,非线性压降和各种流量条件下的质量流量的结果。观察到,LBM的当前应用可以准确地恢复微通道中微尺度流动现象的物理性质。本研究中使用的边界处理类型可以实现耦合模拟,其中可以通过其他数值方法(例如直接模拟蒙特卡洛方法(DSMC))获得壁附近区域的流动特性。

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