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旋转实心圆柱顶盖驱动腔内有内热源时的共轭混合对流换热

Conjugate mixed convection heat transfer with internal heat generation in a lid-driven enclosure with spinning solid cylinder.

作者信息

Mahmud Md Jisan, Rais Ahmed Imtiaz, Hossain Md Rakib, Saha Sumon

机构信息

Department of Mechanical Engineering, Bangladesh University of Engineering and Technology, Dhaka 1000, Bangladesh.

Department of Mechanical Engineering, Hajee Mohammad Danesh Science and Technology University, Dinajpur 5200, Bangladesh.

出版信息

Heliyon. 2022 Nov 30;8(12):e11968. doi: 10.1016/j.heliyon.2022.e11968. eCollection 2022 Dec.

Abstract

The current study investigates conjugate mixed convection heat transmission with internal heat generation in a square enclosure driven by a sliding lid and a solid cylinder with a heat-conducting surface at its center. The enclosure has a stationary bottom wall that is kept at a constant hot temperature and a cold upper wall that moves consistently. The solid cylinder rotates both clockwise and counterclockwise at different angular speeds. Two-dimensional steady continuity, momentum, thermal energy equations, and boundary and interface conditions are solved using a commercial CFD tool based on the finite element method. By choosing Reynolds, Grashof, and Richardson numbers, as well as varying the rotating cylinder's speed and direction under three different scenarios incorporating volumetric heat generation, parametric modeling of the mixed convection regime is carried out. The streamline and isotherm plots are used to illustrate qualitative findings. In contrast, the average Nusselt number, normalized Nusselt number, average drag coefficient, and average fluid temperature are used to assess quantitative thermal performance measures. This study reveals that the system's thermal performance is less dependent on the solid cylinder's rotational speed and direction. It successfully depicts the heat transfer enhancement with increasing Reynolds and Grashof numbers. A thorough study of the current facts can lead to the best choice of regulating parameters.

摘要

当前的研究探讨了在一个由滑动盖子驱动的方形封闭腔内,以及在中心有一个具有导热表面的实心圆柱体存在内部热生成情况下的共轭混合对流热传递。该封闭腔有一个保持恒定高温的固定底壁和一个持续移动的冷上壁。实心圆柱体以不同的角速度顺时针和逆时针旋转。使用基于有限元方法的商业计算流体动力学(CFD)工具求解二维稳态连续性、动量、热能方程以及边界和界面条件。通过选择雷诺数、格拉晓夫数和理查森数,并在包含体积热生成的三种不同情况下改变旋转圆柱体的速度和方向,对混合对流区域进行参数化建模。流线图和等温线图用于说明定性结果。相比之下,平均努塞尔数、归一化努塞尔数、平均阻力系数和平均流体温度用于评估定量热性能指标。本研究表明,系统的热性能对实心圆柱体的转速和方向依赖性较小。它成功地描绘了随着雷诺数和格拉晓夫数增加传热增强的情况。对当前实际情况的深入研究可以导致调节参数的最佳选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c184/9720607/919c86a0a459/gr1.jpg

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