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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >NUMERICAL MODELING OF PRESSURE-DRIVEN NITROGEN SLIP FLOW IN LONG RECTANGULAR MICROCHANNELS
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NUMERICAL MODELING OF PRESSURE-DRIVEN NITROGEN SLIP FLOW IN LONG RECTANGULAR MICROCHANNELS

机译:长矩形微通道内压力驱动氮滑流的数值模拟

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摘要

This article addresses some analytical and numerical modeling issues regarding the simulation of pressure-driven nitrogen slip flow in long microchannels. The main motivation for the study is to overcome the intense computational effort required by the large computational domain and the slow downstream variation and convergence in this problem, and to address some of the existing concerns with current models. A parallel solver is developed and used along with a serial version to obtain the steady state solution. This approach is found to provide an efficient and accurate solution to the problem. A comparison with earlier results is used for validation,as well as for justifying this hybrid approach. Some implemental issues related to the parallel algorithm are discussed and solved. The effects of variable properties, rarefaction, and the source terms in energy equation are determined and are found to be significant, particularly for the case of uniform wall heat flux boundary condition.
机译:本文介绍了有关在长微通道中压力驱动的氮气滑流模拟的一些分析和数值模型问题。该研究的主要动机是克服大计算域所需的大量计算工作以及该问题中缓慢的下游变化和收敛,并解决当前模型中存在的一些问题。开发了并行求解器,并将其与串行版本一起使用以获得稳态解决方案。发现此方法可为问题提供有效且准确的解决方案。与早期结果的比较用于验证以及证明这种混合方法的合理性。讨论并解决了与并行算法有关的一些实现问题。确定了变量属性,稀疏度和能量方程中的源项的影响,并且发现这些影响是显着的,特别是对于均匀的壁热通量边界条件而言。

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