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Lattice Boltzmann Simulation of Gaseous Flow in MicroChannel with Rectangular Grooves

机译:矩形槽微通道内气体流动的格子玻尔兹曼模拟

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This paper presents a numerical investigation based on the Lattice Boltzmann method for gaseous flow in a microchannel with rectangular grooves on the walls. Firstly, the prepared computer code is validated with comparison the obtained results with analytic solution for fully developed rarefied gas flow in a simple micro channel. The effects of the rectangular grooves on the flow characteristics and heat transfer behavior are discussed and the results are compared with a simple mircochannel. For this purpose, a two-dimensional constant wall temperature microchannel with air as the coolant is investigated. The results show that the heat removal increases for the grooved channel more than 50% compared with a simple microchannel. But the pressure drop is also increases due to the effects of grooves. The increase in friction factor is more than twice for some Knudsen numbers.
机译:本文提出了一种基于格子Boltzmann方法的数值研究,该方法用于在壁上具有矩形凹槽的微通道中进行气体流动。首先,将准备的计算机代码与通过简单解决方案在简单的微通道中充分开发稀薄气体流的分析解决方案进行比较,从而验证所获得的结果。讨论了矩形凹槽对流动特性和传热行为的影响,并与简单的微通道进行了比较。为此,研究了以空气作为冷却剂的二维恒定壁温微通道。结果表明,与简单的微通道相比,带槽通道的散热量增加了50%以上。但是由于凹槽的影响,压降也增加了。对于某些克努森数,摩擦系数的增加是两倍以上。

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