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BUOYANCY INDUCED HEAT TRANSFER AND FLUID FLOW INSIDE A PRISMATIC CAVITY

机译:浮力诱导传热和棱柱腔内的流体流动

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This paper deals with a numerical simulation of natural convection flows in a prismatic cavity. This configuration represents solar energy collectors, conventional attic spaces of greenhouses and buildings with pitched roofs. The third dimension of the cavity is considered long enough for the flow to be considered 2D. The base is submitted to a uniform heat flux, the two top inclined walls are symmetrically cooled and the two vertical walls are assumed to be perfect thermal insulators. The aim of the study is to examine the thermal exchange by natural convection and effects of buoyancy forces on flow structure. The study provides useful information on the flow structure sensitivity to the governing parameters, the Rayleigh number (Ra) and the aspect ratio of the cavity. The hydrodynamic and thermal fields, the local Nusselt number, the temperature profile at the bottom and at the center of the cavity are investigated for a large range of Ra. The effect of the aspect ratio is examined for different values of Ra. Based on the authors' knowledge, no previous results on natural convection in this geometry exist.
机译:本文涉及棱镜腔内的自然对流流的数值模拟。这种配置代表太阳能收集器,温室和建筑物的传统阁楼空间,带倾斜屋顶。腔的第三尺寸被认为足以被认为是2D的流动。基座被提交到均匀的热通量,两个顶部倾斜壁对称冷却,并且假设两个垂直壁是完美的热绝缘体。该研究的目的是通过自然对流检查热交换和浮力力对流动结构的影响。该研究提供了有关对控制参数的流动结构敏感性的有用信息,瑞利数(RA)和腔的纵横比。研究了流体动力和热场,局部露天,底部和腔中心处的温度曲线进行了大量RA。针对RA的不同值检查纵横比的效果。基于作者的知识,在这个几何形状中没有先前的自然对流结果。

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