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Numerical Investigation of Solar Air Heater Duct with Square Transverse and Inclined Ribs

机译:方向倾斜肋太阳能空气加热器管道的数值研究

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A numerical investigation has been carried out in order to investigate the effect of artificial roughness on heat transfer coefficient and pressure loss of air flow through an asymmetrically heated rectangular solar air heater duct with constant heat flux condition on absorber plate. Reynolds number is varied from 3000 to 15000. Artificial roughness in the form of transverse and inclined ribs is applied to the surface of the absorber plate. Heat transfer coefficient, friction factor and thermo-hydraulic performance parameter (THPP) are calculated for the range of roughness parameters; relative roughness pitch (P/e) from 11 to 25 at constant relative roughness height (e/D) of 0.8. RNG k - ε turbulence model has been selected for CFD simulation. Artificially roughened surface increased heat transfer coefficient at the expense of increased pressure loss of air flow through the duct.
机译:已经进行了数值研究,以研究人工粗糙度对传热系数与空气流量的效果,通过不对称加热的矩形太阳能空气加热器管道,吸收板上的恒定热通量条件。雷诺数从3000到15000变化。横向和倾斜肋形式的人造粗糙度施加到吸收板的表面。为粗糙度参数的范围计算传热系数,摩擦系数和热液压性能参数(THPP);在0.8的恒定相对粗糙度高度(E / D)下的11至25的相对粗糙度沥青(P / E)。已选择RNG K-ε湍流模型进行CFD仿真。人工粗糙的表面增加了传热系数,以牺牲气流通过管道的压力损失增加。

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