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首页> 外文期刊>International Journal of Heat and Mass Transfer >Natural convective heat transfer in the inclined rectangular cavities with low width-to-height ratios
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Natural convective heat transfer in the inclined rectangular cavities with low width-to-height ratios

机译:宽高比低的倾斜矩形腔体中的自然对流换热

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The natural convection flow is commonly encountered in many engineering applications, and extensive studies were conducted to analyze the natural convection flow in the vertical and inclined rectangular cavities. However, most published studies assumed the cavity with infinite width and neglected the impact of cavity width. The present work mainly focuses on the natural convective heat transfer in the inclined rectangular cavities with low width-to-height ratios, through both experimental and computational fluid dynamics (CFD) analyses. A three-dimensional (3-D) model is firstly built up using the CFD code Fluent to simulate the airflow movement and convective heat transfer in the inclined rectangular cavity. The 3-D CFD model is then validated by the experiments performed on both the inclined and vertical rectangular cavities. Good agreements are observed between the theoretically simulated and experimentally measured airflow velocities and temperatures, as well as the temperatures of cavity walls. After validation, the 3-D CFD model is employed to analyze the impacts of width on the airflow velocity and convective heat transfer in the cavities with the width-to-height ratios of 1, 2,4 and 8 respectively. It is concluded that increasing the width-to-height ratio and cavity inclination contributes to accelerate the natural convection flow and enhance the convective heat transfer in the cavity. In addition, the impact of the cavity width-to-height ratio becomes minimal on the natural convection flow, when it increases beyond 4.
机译:自然对流在许多工程应用中经常遇到,并且进行了广泛的研究以分析垂直和倾斜矩形腔体中的自然对流。但是,大多数已发表的研究假设空腔的宽度是无限的,而忽略了空腔宽度的影响。通过实验和计算流体动力学(CFD)分析,目前的工作主要集中在具有低宽高比的倾斜矩形腔体中的自然对流换热。首先使用CFD代码Fluent建立三维(3-D)模型,以模拟倾斜矩形腔中的气流运动和对流换热。然后,通过在倾斜和垂直矩形腔体上进行的实验来验证3-D CFD模型。在理论模拟和实验测量的气流速度和温度以及腔壁温度之间观察到良好的一致性。验证后,使用3-D CFD模型分析宽度对空腔中气流速度和对流传热的影响,宽度与高度之比分别为1、2、4和8。结论是,增加宽高比和腔体倾斜度有助于加速自然对流,并增强腔体内的对流传热。此外,当腔对宽比增加到4以上时,腔宽高比对自然对流的影响变得最小。

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