首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >NEAR-WALL SCALING OF THE NAVIER-STOKES CONSTITUTIVE RELATIONS FOR ACCURATE MICRO GAS FLOW SIMULATIONS
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NEAR-WALL SCALING OF THE NAVIER-STOKES CONSTITUTIVE RELATIONS FOR ACCURATE MICRO GAS FLOW SIMULATIONS

机译:精确微气流模拟中Navier-Stokes本构关系的近壁尺度

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摘要

A new model is described for micro gas flows that combines a second-order slip boundary condition with a near-wall scaling of the Navier-Stokes constitutive relations. This scheme, which is easily implemented within a conventional CFD framework, is shown to be far more accurate than the conventional second-order slip model at predicting high Knudsen number micro Couette and Poiseuille flows. It is also of equivalent computational cost, and as such, represents a more attractive alternative to the conventional slip approach. It is also shown that the current model is capable of accurately predicting combined Couette/Poiseulle flows at a much higher Knudsen number than second-order slip conditions, which bodes well for the applicability of the scheme to more general configurations.
机译:描述了一种针对微气流的新模型,该模型将二阶滑移边界条件与Navier-Stokes本构关系的近壁缩放相结合。该方案在常规CFD框架中易于实现,在预测高克努森数微库埃特流和泊瓦伊流时,比常规二阶滑移模型要精确得多。它也具有同等的计算成本,因此,它是传统滑移方法的一种更具吸引力的替代方法。还表明,当前模型能够以比二阶滑移条件高得多的克努森数精确地预测库埃特/泊色组合流量,这预示该方案可应用于更一般的配置。

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