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Analysis of heat transfer augmentation and flow characteristics due to rib roughness over absorber plate of a solar air heater

机译:太阳能热水器吸热板肋肋粗糙度引起的传热增加和流动特性分析

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摘要

A computational analysis of heat transfer augmentation and flow characteristics due to artificial roughness in the form of ribs on a broad, heated wall of a rectangular duct for turbulent flow (Reynolds number range 3000-20,000, which is relevant in solar air heater) has been carried out. Shear stress transport k—ω turbulence model is selected by comparing the predictions of different turbulence models with experimental results available in the literature. A detailed analysis of heat transfer variation within inter rib region is done by using the selected turbulence model. The analysis shows that peak in local heat transfer coefficient occurs at the point of reattachment of the separated flow as observed experimentally. The results predict a significant enhancement of heat transfer in comparison to that for a smooth surface. There is a good matching between the predictions by SST k—ω and experimental results. In this work, nine different shapes of rib are examined using SST k — ω model and compared on the basis of heat transfer enhancement, friction characteristics and performance index considering heat transfer enhancement with the same pumping power.
机译:已经进行了计算计算分析,该分析是由于在湍流的矩形管道(受雷诺数范围为3000-20,000,与太阳能空气加热器相关)的宽大的加热壁上呈肋状的人工粗糙导致的人工粗糙引起的传热增加和流动特性的计算分析。执行。通过将不同湍流模型的预测结果与文献中提供的实验结果进行比较,选择了剪切应力传递k-ω湍流模型。使用选定的湍流模型对肋间区域内的传热变化进行了详细分析。分析表明,如实验观察到的,局部传热系数的峰值出现在分离流的重新附着点。结果预测,与光滑表面相比,传热将显着增强。 SSTk-ω的预测值与实验结果之间有很好的匹配。在这项工作中,使用SSTk_ω模型检查了九种不同形状的肋骨,并在考虑相同传热功率的情况下考虑传热增强的传热增强,摩擦特性和性能指标进行了比较。

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