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Flow downward penetration of vertical parallel plates natural convection with an asymmetrically heated wall

机译:垂直向下流动的垂直平行板自然向下对流,壁不对称加热

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Phenomena of the flow downward penetration in vertical parallel plates natural convection with an asymmetrically heated wall are investigated numerically. For clarifying the occurrence of flow downward penetration, the width of parallel plates is further broadened and broader than that investigated in the previous study in which the flow reversal was studied in detail. In order to simulate realistically, the compressibility and the viscosity of the working fluid are simultaneously considered, and the non-reflecting boundary is adopted at apertures of plates. The methods of the Roe scheme, preconditioning, and dual time stepping matching LUSGS are coordinated to solve governing equations of a low-speed compressible flow problem. The flow downward penetration, in which fluids are sucked from surroundings outside the outlet to flow into the parallel plates and through the inlet flow out of parallel plates, is composed of a few fluids and firstly observed. Also, two flow reversal caused by the buoyancy force appear in the upper left region, and one flow reversal induced by the flow downward penetration appears in the low right region. The usage of the existing results and present study, an equivalent ratio of the width to the length of parallel plates, of which the heat transfer rate is the same as the single vertical heated plate, can be expediently obtained. In this study, the ratio is about 0.6.
机译:数值研究了非对称加热壁在垂直平行板自然对流中向下流动的现象。为了弄清流向向下渗透的发生,平行板的宽度比以前的研究中对流向进行了详细研究的研究进一步拓宽了。为了真实地模拟,同时考虑了工作流体的可压缩性和粘度,并且在板的孔处采用了非反射边界。协调Roe方案,预处理和双重时间步长匹配LUSGS的方法,以解决低速可压缩流问题的控制方程。向下流动是由少量流体组成的,首先从流体中向下渗透,其中流体从出口外部的环境中吸出,流入平行板,并通过入口流出平行板。另外,在左上方区域产生了由浮力引起的两个逆流,在右下方区域出现了由向下流动引起的逆流。利用现有结果和本研究,可以方便地获得平行板的宽度与长度的等效比,其传热速率与单个垂直加热板相同。在这项研究中,该比率约为0.6。

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