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首页> 外文期刊>International journal of low carbon technologies >Optimization of configurations to enhance heat transfer from a longitudinal fin exposed to natural convection and radiation
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Optimization of configurations to enhance heat transfer from a longitudinal fin exposed to natural convection and radiation

机译:优化配置以增强从暴露于自然对流和辐射的纵向鳍片传热

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In the present work, a computational fluid dynamics analysis has been carried out for analysing heat transfer from a longitudinal fin with step change. For the aforementioned problem, heat is transferred by conduction through the fin along its length and dissipated from the fin surface via natural convection to the ambient and thermal radiation to the surrounding. For a given volume or mass, the total amount of heat dissipated from the fin surface, fin effectiveness and fin efficiency have been determined for two novel fin profiles and the results have been compared with that of conventional rectangular fin (CRF). Numerical calculations have been carried out for five different cases. It has been concluded that novel fin configurations dissipate more heat and produce higher fin efficiency than the CRF profile. The rectangular fin with single-step change has been found to be the most efficient fin profile in terms of maximum heat loss and fin efficiency. The optimum fin dissipated ~3.4% more heat and provided 2% higher efficiency than the CRF profile. Some recommendations have been made about the potential application areas of proposed fin configurations.
机译:在本工作中,已经进行了计算流体动力学分析,以分析随着阶跃变化从纵向散热片传热。对于上述问题,热量通过散热片沿其长度方向的传导进行传递,并通过散热片从散热片表面自然对流散发到周围,并通过热辐射散发到周围。对于给定的体积或质量,已确定了两种新型翅片轮廓从翅片表面散发的热量,翅片效率和翅片效率,并将结果与​​常规矩形翅片(CRF)进行了比较。针对五种不同情况进行了数值计算。已经得出的结论是,新颖的散热片配置比CRF轮廓散发更多的热量并产生更高的散热片效率。从最大的散热量和效率来看,单步变化的矩形散热片是最有效的散热片轮廓。最佳散热片的散热量比CRF曲线高出约3.4%,效率提高了2%。对于建议的散热片配置的潜在应用领域,已经提出了一些建议。

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