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Turbulent mixed convection within rapidly rotating heated annular cavities with an axial throughflow

机译:湍流混合对流在快速旋转的加热环形空腔内,具有轴向流量

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The results of eddy-resolving numerical simulation of a turbulent mixed convection in a system of three identical, rapidly rotating annular cavities are presented. The cavities are heated from the side of the disk surfaces and from the periphery (the same distribution of the surface temperature is set for all the cavities), and heat removal proceeds by an axial air throughflow in the narrow channel, annular within the cavity system. The computations based on the Implicit LES method have been carried out in view of the conditions close to the experiments known from the literature for a single cavity; the rotational Reynolds number was 200,000, the grid dimension was 17 million cells. The complex multiscale flow structure and the influence of the input aerodynamic and thermal conditions, which are not identical for the cavities included in the system, on the local heat transfer from disk surfaces are discussed.
机译:呈现了三个相同,快速旋转的环形空腔系统中湍流混合的涡流混合对流的涡流混合对流的数值模拟结果。 腔从盘表面的侧面加热,并且从周边(为所有空腔设定的表面温度的相同分布),并且热移除通过窄通道中的轴向空气流出,腔系统内的环形环形。 。 考虑到接近从文献中已知的单腔的实验的条件,已经进行了基于隐式LES方法的计算; 旋转雷诺数为20万,电网维度为1700万个细胞。 讨论了复杂的多尺寸流动结构和输入空气动力学和热条件的影响,该空气动力学和热条件不相同,该空腔包括在系统中的腔体,从磁盘表面的局部传热上进行。

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