首页> 外文会议>6th international conference on nanochannels, microchannels and minichannels 2008 >COMPUTATION OF RAREFIED GASEOUS FLOWS IN MICRO TO NANO SCALE CHANNELS WITH SLIP TO TRANSIENT REGIMES USING GENERAL SECOND-ORDER QUADRATIC ELEMENTS
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COMPUTATION OF RAREFIED GASEOUS FLOWS IN MICRO TO NANO SCALE CHANNELS WITH SLIP TO TRANSIENT REGIMES USING GENERAL SECOND-ORDER QUADRATIC ELEMENTS

机译:通用二次元计算从微尺度到纳米尺度通道中带有滑移到过渡区域的稀疏气体流

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摘要

A new finite-volume-based finite-element method using the quadratic elements is developed in the present study, to analyze the flow in micro and nano sizes with higher-order slip boundary conditions. The method is applied to gaseous flow in micro and nanoscale-channels. The developed method is carried out over a wide range of Knudsen numbers, which cover not only the continuum slip flow regime with 0≤Kn≤0.1 but also it entire the range of transient regime with 0.1≤Kn≤10. To make the present computational model capable of simulating micro and nano sizes with the help of the Navier-Stokes equations, the modified high-order slip boundary conditions are applied which need utilizing the advantages of general quadratic second order elements in the computational domain. In other words, this paper introduces a new developed method, which is applied on higher-order elements, and employing reliable boundary conditions that all of these issues are used for the first time in the Micro/Nano study as well. The results reveal excellent agreement with those represented by analytical, DSMC, and Boltzmann calculations. The proposed method (using finite-volume-element strategy which benefits from the advantages of general quadratic second-order elements) is proved to be an efficient, practical, and accurate tool, which robustly extends the capability of our primitive large scale Navier-Stokes solver to micro and nano-scale flow predictions in slip and transient regimes. It can be regarded as a super alternative to classical molecular dynamics-based methods.
机译:本研究开发了一种新的基于二次元的基于有限体积的有限元方法,以分析具有高阶滑移边界条件的微米和纳米尺寸的流动。该方法适用于微和纳米级通道中的气流。所开发的方法在广泛的克努森数范围内进行,不仅覆盖了0≤Kn≤0.1的连续滑移流态,而且还覆盖了0.1≤Kn≤10的整个瞬态流态。为了使当前的计算模型能够通过Navier-Stokes方程来模拟微米和纳米尺寸,应用了修改后的高阶滑移边界条件,该条件需要在计算域中利用一般二次二阶元素的优势。换句话说,本文介绍了一种新开发的方法,该方法适用于高阶元素,并采用了可靠的边界条件,所有这些问题在Micro / Nano研究中也是首次使用。结果显示与解析,DSMC和Boltzmann计算所代表的结果非常吻合。所提出的方法(使用有限体积元素策略得益于通用二次二阶元素的优势)被证明是一种有效,实用且准确的工具,可稳健地扩展我们原始的大规模Navier-Stokes的能力滑移和瞬态状态下的微米和纳米级流量预测的求解器。它可以被视为基于经典分子动力学方法的超级替代方法。

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