从下加热的天窗形阁楼的流体流动和传热特性

O. Kamiyo, A. Waheed
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摘要

本文对一种俯仰角分别为14o、180o、300o和45o、瑞利数范围为3 × 105≤Ra≤2 × 107的开窗屋顶设计进行了空气动力学和阁楼传热的有限体积分析。机壳的形状对流场和温度场的结构有很大的影响。流场的特征是被气动边界层包围的反向旋转涡。细胞旋转的大小、强度和方向是由推动热羽流和冷射流的力量控制的。随着屋顶俯仰角的增加,反向旋转单元的数量和尺寸的减少以及它们在外壳内的形成提供了类似的总传热率的减少。通过中高和中长外壳的速度和温度分布,可以预测阁楼的适当位置,并具有放置敏感物品的合适条件。在换热问题上,平均努塞尔数与瑞利数之间以相关关系的形式表现出来。研究结果对从事建筑阁楼分析和设计的建筑工程师和热带农学家控制农产品干燥速率具有重要意义。关键词:传热,下面受热,自然对流,斜屋顶,天窗形
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluid Flow and Heat Transfer Characteristics of Clerestory-Shaped Attics Heated from Below
In this study, a finite volume analysis of the aerodynamics and heat transfer in attics of a clerestory roof design with pitch angles 14o, 18o, 30o and 45o and Rayleigh number range 3 x 105≤ Ra ≤ 2 x 107 is carried out. The shape of the enclosure has strong influence on the structure of the flow and temperature fields. The flow field is characterised by counter-rotating vortices enclosed by aerodynamic boundary layers. The size, strength and direction of rotation of the cells are controlled by the forces propelling the thermal plumes and the cold jets. The reduction of the number and size of the counter-rotating cells and their formation within the enclosures provide an analogous reduction of the total heat transfer rate as the roof pitch angle increases. The velocity and temperature profiles across midheight and midlength of the enclosures enable the prediction of appropriate position in the attic with the right condition to place sensitive items. On the heat transfer, the relationship between the mean Nusselt number and the Rayleigh number is presented in form of a correlation. Results obtained in the study are of significance to building engineers engaged in the analysis and design of building attics and tropical agriculturalists for the control of produce drying rates. Keywords: Heat transfer, heated below, natural convection, pitch roof, clerestory-shaped
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