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首页> 外文期刊>ZAMP: Zeitschrift fur Angewandte Mathematik und Physik: = Journal of Applied Mathematics and Physics: = Journal de Mathematiques et de Physique Appliquees >Poiseuille flow and thermal transpiration of a rarefied gas between parallel plates II: effect of nonuniform surface properties in the longitudinal direction
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Poiseuille flow and thermal transpiration of a rarefied gas between parallel plates II: effect of nonuniform surface properties in the longitudinal direction

机译:平行板之间稀有气体的泊瓦流动和热蒸发II:纵向方向上表面性质不均匀的影响

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Poiseuille flow and thermal transpiration of a rarefied gas between two parallel plates are studied for the situation that one of the walls is a Maxwell-type boundary with a periodic distribution of the accommodation coefficient in the longitudinal direction. The flow behavior is studied numerically based on the Bhatnager-Gross-Krook-Welander model of the Boltzmann equation. The solution is sought in a superposition of a linear and a periodic functions in the longitudinal coordinate. The numerical solution is provided over a wide range of the mean free path and the parameters characterizing the distribution of the accommodation coefficient. Due to the nonuniform surface properties in the longitudinal direction, the flow is nonparallel, and a deviation in the pressure and the temperature of the gas from those of the conventional parallel flow is observed. An energy transfer between the gas and the walls arises. The mass flow rate of the gas is approximated by a formula consisting of the data of one-dimensional flows; however, a non-negligible disagreement is observed in Poiseuille flow when the amplitude of the variation of the accommodation coefficient is sufficiently large. The validity of the present approach is confirmed by a direct numerical analysis of a flow through a long channel.
机译:研究了在两个平行板之间的稀薄气体的泊瓦数流和热蒸发,其条件是壁中的一个是麦克斯韦型边界,并且在纵向上具有周期性的调节系数分布。基于Boltzmann方程的Bhatnager-Gross-Krook-Welander模型对流动行为进行了数值研究。在纵向坐标中线性和周期函数的叠加中寻求解决方案。在宽范围的平均自由程和表征调节系数分布的参数上提供了数值解。由于在纵向方向上的不均匀的表面特性,流动是不平行的,并且观察到气体的压力和温度与常规平行流动的压力和温度有偏差。在气体和壁之间产生能量转移。气体的质量流量由一维流量数据组成的公式来近似。但是,当容纳系数的变化幅度足够大时,在泊瓦伊流中观察到了不可忽略的分歧。通过对长通道流动的直接数值分析证实了本方法的有效性。

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