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Modeling and Simulation of Turbulent Flows through a Solar Air Heater Having Square-Sectioned Transverse Rib Roughness on the Absorber Plate

机译:通过在吸收板上具有方向横肋粗糙度的太阳能空气加热器的湍流建模与仿真

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Solar air heater is a type of heat exchanger which transforms solar radiation into heat energy. The thermal performance of conventional solar air heater has been found to be poor because of the low convective heat transfer coefficient from the absorber plate to the air. Use of artificial roughness on a surface is an effective technique to enhance the rate of heat transfer. A CFD-based investigation of turbulent flow through a solar air heater roughened with square-sectioned transverse rib roughness has been performed. Three different values of rib-pitch (P) and rib-height (e) have been taken such that the relative roughness pitch (P/e=14.29) remains constant. The relative roughness height,e/D, varies from 0.021 to 0.06, and the Reynolds number, Re, varies from 3800 to 18,000. The results predicted by CFD show that the average heat transfer, average flow friction, and thermohydraulic performance parameter are strongly dependent on the relative roughness height. A maximum value of thermohydraulic performance parameter has been found to be 1.8 for the range of parameters investigated. Comparisons with previously published work have been performed and found to be in excellent agreement.
机译:太阳能加热器是一种热交换器,将太阳辐射转化为热能。由于从吸收板到空气中的具有低对流传热系数,已经发现传统的太阳能加热器的热性能差。在表面上使用人工粗糙度是提高传热速率的有效技术。已经进行了基于CFD通过太阳能空气加热器进行粗糙的湍流调查,粗糙地用方形截面横向肋粗糙度进行粗糙化。已经采取了三种不同的肋条(P)和肋高度(e),使得相对粗糙度沥青(P / E = 14.29)保持恒定。相对粗糙度高度,E / D,从0.021变化到0.06,雷诺数Re,Re,Re,从3800到18,000之间变化。 CFD预测的结果表明,平均传热,平均流动摩擦和热液化性能参数强烈依赖于相对粗糙度高度。针对调查的参数范围,已发现热液性能参数的最大值为1.8。已经进行了先前发表的工作的比较,并发现了很好的一致性。

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