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Models for Gaseous Slip Flow in Non-Circular Microchannels

机译:非圆形微通道中气体滑流的模型

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摘要

Micro-scale fluid dynamics has received intensive interest due to the emergence of Micro-Electro-Mechanical Systems (MEMS) technology. Non-circular cross sections are common channel shapes that can be produced through a variety of micro-fabrication techniques. Non-circular microchannels have extensive practical applications in MEMS. Slip flow in non-circular microchannels has been examined by the authors and a review of several new models obtained by the authors is presented. These models are general and robust, and can be used by the research community for practical engineering design of microchannel flow systems. The reviewed models address: (ⅰ) fully developed slip flow in non-circular microchannels, (ⅱ) hydrodynamically developing slip flow in non-circular microchannels, (ⅲ) compressibility effects, and (ⅳ) roughness effects. A model is proposed to predict the friction factor and Reynolds product fRe for fully developed and developing slip flow in most non-circular micro-channels. Compressibility effects on slip flow in non-circular microchannels have been examined and simple models are proposed to predict the pressure distribution and mass flow rate for slip flow in most non-circular microchannels. Finally, the effect of corrugated surface roughness on fully developed laminar flow in microtubes is examined. Simple analytical models are developed to predict friction factor and pressure drop in corrugated rough microtubes for continuum flow and slip flow.
机译:由于微机电系统(MEMS)技术的出现,微尺度流体动力学引起了广泛的关注。非圆形横截面是常见的通道形状,可以通过各种微细加工技术生产。非圆形微通道在MEMS中具有广泛的实际应用。作者已经研究了非圆形微通道中的滑流,并提出了作者获得的几种新模型的综述。这些模型具有通用性和鲁棒性,可供研究界用于微通道流动系统的实际工程设计。审查的模型解决:(ⅰ)在非圆形微通道中充分发展的滑流,(ⅱ)在非圆形微通道中以流体动力学方式发展的滑流,(ⅲ)可压缩性效应,和(ⅳ)粗糙度效应。提出了一个模型,以预测在大多数非圆形微通道中充分发展和发展的滑流的摩擦因数和雷诺乘积fRe。已经研究了非圆形微通道中可压缩性对滑流的影响,并提出了简单的模型来预测大多数非圆形微通道中滑流的压力分布和质量流率。最后,检查了波纹表面粗糙度对微管中充分发展的层流的影响。开发了简单的分析模型来预测波纹状微管在连续流和滑流中的摩擦因数和压降。

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