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Numerical study on natural convection and entropy generation in squares and corrugated cavities

机译:正方形和瓦楞腔自然对流和熵生成的数值研究

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The present work deals with the study of the entropy generation in the natural convection process in both square cavities and square cavities with hot wavy walls through numerical simulations for different undulations and Rayleigh numbers, while keeping the Prandtl number constant. The results show that the heat transfer rate is notably affected by the shape of the hot wall geometry compared with the square one. It has been found in this investigation that the mean Nusselt number in the case of heat transfer in a cavity with wavy walls is lower, as compared to heat transfer in a cavity without undulations. Based on the obtained dimensionless velocity and temperature values, the distributions of the local entropy generation due to heat transfer and fluid friction, the local Bejan number, and the local entropy generation are determined and plotted for different undulations and Rayleigh number. The study is performed for Rayleigh number 10~5
机译:本工作涉及通过用于不同波浪数和瑞利数的数值模拟,对各个方腔和方形腔内的自然对流过程中的熵产生研究,同时保持普朗特数常数。结果表明,与平方体相比,传热速率明显受热壁几何形状的影响。在该研究中已经发现,与在没有起伏的腔中的热传递相比,在具有波浪壁的腔中的热传递的情况下的平均良好数量较低。基于所获得的无量纲速度和温度值,确定并绘制由于传热和流体摩擦引起的局部熵产生以及局部熵和局部熵生成的分布,并针对不同的起伏和瑞利数绘制。该研究是针对瑞利数10〜5

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