首页> 外文会议>Micro/Nanoscale Heat Transfer International Conference >FLOW CHARACTERISTICS OF RARIFIED GASES IN MICRO-GROOVED CHANNELSBY THE LATTICE-BOLTZMANN METHOD
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FLOW CHARACTERISTICS OF RARIFIED GASES IN MICRO-GROOVED CHANNELSBY THE LATTICE-BOLTZMANN METHOD

机译:Lattice-Boltzmann方法的微槽通道中稀有气体的流动特性

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The flow characteristics of a rarified gas have been investigated in microgrooved channels. The governing Boltzmann Transport Equation (BTE) is solved by the Lattice-Boltzmann method (LBM) for the Knudsen number range of 0.01-0.1. First, the compressibility and rarified effects are investigated in a plane channel by performing numerical simulations for different Knudsen numbers, pressure ratio and accommodation coefficients with the objective of validating the computational code used in this investigation and determining the transition characteristics from the macro to microscale. The numerical predictions are compared to existing analytical and numerical results. Then, numerical simulations are performed for microgrooved channels for the Knudsen numbers range of [0.01-0.1]. Different meshes are used for preserving numerical stabilities and obtaining accurate enough numerical results. For the microgrooved channel configuration, the fluid characteristics are determined in terms of pressure ratio and Knudsen numbers. The numerical results are compared to existing analytical predictions and numerical results obtained from plane channel and one cavity simulations.
机译:已经研究了在微血晶通道中进行了稀有气体的流动特性。用晶格-Boltzmann方法(LBM)解决了控制玻璃螺栓传输方程(BTE),用于0.01-0.1的Knudsen号码范围。首先,通过对不同的knudsen数,压力比和容纳系数执行不同的knudsen数,压力比和容纳系数来研究压缩性和rarified效果,其目的是验证本研究中使用的计算代码并确定从宏到微尺度的转换特性。将数值预测与现有的分析和数值结果进行比较。然后,对微血晶通道进行数值模拟,用于[0.01-0.1]的knudsen数范围。不同的网格用于保持数值稳定性并获得准确的数值效果。对于微血晶通道配置,在压力比和knudsen数方面确定流体特性。将数值结果与从平面通道和一个腔模拟获得的现有分析预测和数值结果进行比较。

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