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Effect of compressibility on gaseous flows in micro-channels

机译:可压缩性对微通道中气流的影响

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Two-dimensional compressible momentum and energy equations are solved in a parallel plate channel to obtain the effect of compressibility on gaseous flow characteristics in micro-channels. The numerical methodology is based on arbitrary-Lagrangian-Eulerian method. The computations were performed for a wide range of Reynolds number and Mach number and for both 'no heat conduction' and isothermal flow conditions. The results are presented in form of the product of friction factor and Reynolds number (f · Re) expressed as a function of both Reynolds number and Mach number and was compared with available experimental results. It was found that f · Re is mainly a function of Mach number and is different from the incompressible value of 96 for parallel-plate channels.
机译:在平行板状通道中求解二维可压缩动量和能量方程,以获得可压缩性对微通道中气体流动特性的影响。数值方法基于任意拉格朗日-欧拉方法。计算是针对广泛的雷诺数和马赫数以及“无热传导”和等温流动条件进行的。结果以摩擦系数和雷诺数(f·Re)乘积的形式表示,表示为雷诺数和马赫数的函数,并与可用的实验结果进行了比较。发现f·Re主要是马赫数的函数,与平行板通道的不可压缩值96不同。

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