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Numerical investigation of rarefied gaseous flows in an oblique wavy sided walls square cavity

机译:倾斜波状墙方腔中稀土气流的数值研究

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This paper intends to analyze computationally the rarefied gaseous flow and performance of heat transfer for a steady-state laminar 2D free convection within tilted enclosures where the sided walls are of wavy shape. Low-pressure or rarefied flows are flows with Knudsen number greater than zero. These kinds of flows are of incredible significance in different applications. Boussinesq estimation is adopted to represent the buoyancy effects. Grid independence tests are carried out to ensure accuracy. Moreover, the current code is verified with numerical and experimental results existing in the literature. Flow and thermal fields for simulated cases are presented. The outcome of this research indicates that there is a direct relationship between the average Nusselt number and the Rayleigh number, and a converse relationship between the average Nusselt number and Knudsen number. Additionally, the numerical simulations reveal that increasing the amplitude of the two-sided wavy walls of the enclosure slightly mends the transfer of heat. Besides, it is determined that the tilt angle slightly affects the heat transfer performance of such flows; and it is evident from the simulations that horizontal or nearly horizontal orientations of such cavities give the maximum transfer of heat. Finally, a correlation representing the relationship of the average Nusselt number in terms of all the examined parameters is introduced.
机译:本文旨在计算稀有的气流和传热的稳态层状2D自由对流中的稀有气体流量和传热性能的倾斜外壳。侧壁具有波纹形状。低压或稀土流量是knudsen号的流量大于零。这些流量在不同的应用中具有令人难以置信的意义。采用Boussinesq估计来表示浮力效应。进行网格独立测试以确保准确性。此外,目前的代码以文献中存在的数值和实验结果验证。提出了模拟案例的流量和热场。该研究的结果表明,平均露天数和瑞利数之间存在直接关系,以及平均南部数量和knudsen号之间的逆转关系。另外,数值模拟揭示了增加外壳的双面波浪壁的幅度略微修复热量。此外,确定倾斜角略微影响这种流动的传热性能;从模拟中明显看出,这种腔的水平或几乎水平取向具有最大的热量传递。最后,介绍了代表所有检查参数的平均营销号码关系的相关性。

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