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NUMERICAL AND EXPERIMENTAL STUDY OF GAS FLOWS IN 2D AND 3D MICROCHANNELS

机译:2D和3D微通道气体流量的数值和实验研究

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In the experiments conducted at Purdue, the air flow in rectangular cross-section microchannels was investigated using the pressure sensitive paints. The high resolution pressure measurements were obtained for inlet-to-outlet pressure ratios from 1.76 to 20 with the outlet Knudsen numbers in the range from 0.002 to 0.06 based on hydraulic diameter of 157.9 micron and the length-to-height ratio of about 50. In the slip flow regime, air flow was simulated by the 2D and 3D Navier-Stokes equations with no-slip and slip boundary conditions. For various pressure ratios, the entrance flow development, compressibility and rarefaction effects were observed in both experiments and numerical simulations. It was found that accurate modeling of gas flows in finite-length channels requires that inlet and outlet reservoirs to be included in computations. Effects of entrance geometry on the friction factor were studied for 3D cases. In both experiments and numerical modelings, significant pressure drop was found starting at the inlet chamber. The numerical modeling also predicted an apparent temperature drop especially at the channel exit.
机译:在在PUTDUE进行的实验中,使用压敏涂料研究了矩形横截面微通道中的空气流量。对于从1.76至20的入口 - 出口压力比率获得高分辨率的压力测量,从液压直径为0.002至0.06的出口滚子数,基于157.9微米,长度为约50的长度。在滑动流动状态下,通过具有无滑动和滑动边界条件的2D和3D Navier-Stokes方程模拟空气流量。对于各种压力比,在实验和数值模拟中观察到入口流动发育,可压缩性和稀疏效应。结果发现,有限长度通道中的气体流的精确建模要求将入口和出口储存器包括在计算中。 3D例研究入射几何对摩擦因子的影响。在实验和数值建模中,发现在入口室开始显着的压降。数值建模还预测了特别是在通道出口处的表观温度下降。

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