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PRESSURE DROP FOR SUBSONIC GAS FLOW IN MICROCHANNELS AND NANOCHANNELS

机译:微通道和纳米通道中亚音速气流的压降

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The objective of this article is to furnish the research and design communities with a simple and convenient means of predicting pressure drop for subsonic gas flow in microducts. The pressure drop is utilized to overcome the friction against the walls and simultaneously accelerate the flow to compensate for the decrease in density. A general pressure drop model for approximately isothermal subsonic gas flow in microchannels is proposed. The momentum changes due to gas acceleration along the channel are taken into account. The model is also extended to the transition regime by employing the appropriate second-order slip boundary conditions. As for subsonic gas flow, no solutions or graphical and tabulated data exist for almost all geometries when the outlet Mach number is greater than 0.3. The developed simple model fills this void and can be used for the practical engineering design of microchannels and nanochannels by the research and design communities.
机译:本文的目的是为研究和设计界提供一种简单方便的方法来预测微导管中亚音速气流的压降。利用压降来克服对壁的摩擦,并同时加速流动以补偿密度的降低。提出了微通道中近似等温亚音速气流的一般压降模型。考虑到由于气体沿通道加速而引起的动量变化。通过采用适当的二阶滑移边界条件,该模型还扩展到过渡状态。对于亚音速气流,当出口马赫数大于0.3时,几乎所有几何形状都没有解决方案,图形或表格数据。所开发的简单模型填补了这一空白,并且可以被研究和设计团体用于微通道和纳米通道的实际工程设计。

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