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CFD analysis of solar air heater duct having square wave profiled transverse ribs as roughness elements

机译:以方波形横肋为粗糙单元的太阳能热水器风道的CFD分析

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摘要

In this investigation, the thermal and hydraulic performance of solar air heater duct roughened with non-uniform cross-sectioned square wave profiled transverse rib is carried out in ANSYS Fluent 15.0. The 3-D investigation considered parameters as relative roughness pitch 4-30 and Reynolds number 3000-15,000, while relative roughness height has been fixed as 0.043. The turbulence model RNG k-epsilon with enhanced wall treatment and one periodic length was selected for analysis. The CFD methodology has been validated with the experimental results available in literature. The maximum augmentation in Nusselt number and friction factor over smooth duct was found to be 2.14 times and 3.55 times respectively at relative roughness pitch of 10 and Reynolds number of 15,000. The heat transfer and fluid flow process are discussed and visualized using streamlines and contours. The maximum thermohydraulic performance parameter was observed to be 1.43 at relative roughness pitch of 10 and Reynolds number of 12,000. The thermohydraulic performance for the non-uniform rib was also observed to be more than uniform cross-sectioned rib.
机译:在这项研究中,在ANSYS Fluent 15.0中对具有不均匀横截面的方波轮廓横肋进行粗糙化处理的太阳能加热器管道的热力和水力性能进行了研究。 3-D研究将参数视为相对粗糙度间距4-30和雷诺数3000-15,000,而相对粗糙度高度已固定为0.043。选择具有增强壁处理和一个周期长度的湍流模型RNGk-ε进行分析。 CFD方法论已通过文献中提供的实验结果进行了验证。在相对粗糙度节距为10和雷诺数为15,000时,光滑管上的Nusselt数和摩擦系数的最大增加分别为2.14倍和3.55倍。使用流线和轮廓线讨论并可视化了传热和流体流动过程。在相对粗糙度节距为10和雷诺数为12,000时,观察到最大热工液压性能参数为1.43。还观察到非均匀肋的热工液压性能要比均匀横截面的肋好。

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