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CFD based Analysis of a Solar Air Heater having Isosceles Right Triangle Rib Roughness on the Absorber Plate

机译:基于CFD的吸收板上具有等腰直角三角形肋肋的太阳能空气加热器的分析

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In the present work the study of heat transfer and friction characteristics in rectangular duct of a solar air heater having isosceles right triangle rib shape on the absorber plate by using CFD (Computational Fluid Dynamics) The roughness has been placed in such way that the hypotenuse faces against the flow direction. The design parameters chosen for study are Reynolds number, roughness height and roughness pitch. The turbulence model used in CFD solutions is Renormalization group (RNG) k-ε. The roughness height (e) is chosen as 0.5mm, 1.0mm and 1.5mm at roughness pitch (P) of 5mm, 10mm, 15mm and 20mm. The relative roughness Pitch (P/e=3.33-40) and relative roughness height (e/D= 0.015-0.045) is taken. The effect of transverse wedge shape on heat transfer and friction factor was investigate covering the range of roughness parameter having Reynolds no varies from 3000 to 18000. ANSYS FLUENT is used to simulate turbulent airflow in artificial roughened solar air heater. Five different turbulence models is tested on the quality of obtained results. The RNG k-ε model yield better result for two dimensional flow through conventional solar air heaters. Thermo-hydraulic performance is also calculated. Correlations for the Nusselt number and friction factor have been developed.
机译:在本工作中,通过使用CFD(计算流体力学)研究在吸收板上等腰直角肋肋形状的太阳能空气加热器矩形管道中的传热和摩擦特性。逆流方向。选择用于研究的设计参数是雷诺数,粗糙度高度和粗糙度节距。 CFD解决方案中使用的湍流模型是重归一化组(RNG)k-ε。在5mm,10mm,15mm和20mm的粗糙度间距(P)下,粗糙度高度(e)被选择为0.5mm,1.0mm和1.5mm。取相对粗糙度节距(P / e = 3.33-40)和相对粗糙度高度(e / D = 0.015〜0.045)。研究了横向楔形形状对热传递和摩擦系数的影响,该范围涵盖了雷诺数在3000至18000之间变化的粗糙度参数范围。ANSYS FLUENT用于模拟人造粗糙太阳能空气加热器中的湍流。根据获得的结果的质量测试了五个不同的湍流模型。对于通过常规太阳能空气加热器的二维流动,RNGk-ε模型产生更好的结果。还计算了热工液压性能。已经开发了努塞尔数和摩擦系数的相关性。

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