首页> 外文期刊>British Journal of Applied Science and Technology >Heat Transfer and Friction Factor Correlationsfor Rectangular Solar Air Heater DuctHaving 60?° Inclined Continuous DiscreteRib Arrangement
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Heat Transfer and Friction Factor Correlationsfor Rectangular Solar Air Heater DuctHaving 60?° Inclined Continuous DiscreteRib Arrangement

机译:矩形太阳能空气加热器管道具有60?°倾斜连续离散离散肋布置的传热和摩擦系数相关

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The heat transfer coefficient between the absorber plate and air can be considerably increased by using artificial roughness on the underside of the absorber plate of the solar air heater. An experimental study has been carried out for enhancement of heat transfer coefficient of a solar air heater having roughened air duct provided with artificial roughness in the form 60° inclined discrete rib. Increment in friction factor by provided with such artificial roughness element has also been studied. The effect of system parameters such as relative roughness height (e/D), relative roughness pitch (P/e) and relative gap position (d/W) have been studied on Nusselt number (Nu) and friction factor (f) with relative gap width (g/e) 1 and Reynolds number (Re) varied from 4105 to 20526. Considerably enhancement in heat transfer coefficient has been achieved with such roughness element. Using experimental data correlations for Nusselt number and friction factor have also been developed for such solar air heaters, which gives a good agreement between predicted values and experimental values of Nusselt number and friction factor.
机译:通过在太阳能空气加热器的吸收器板的下侧使用人工粗糙度,可以大大提高吸收器板与空气之间的传热系数。为了提高具有粗糙的风道的太阳能空气加热器的传热系数,已经进行了实验研究,该风道具有粗糙的风道,该风道具有60°倾斜的离散肋形式的人造粗糙度。还研究了通过提供这种人工粗糙度元件来增加摩擦系数。研究了系统参数如相对粗糙度高度(e / D),相对粗糙度间距(P / e)和相对间隙位置(d / W)对努塞尔数(Nu)和摩擦因数(f)的影响。间隙宽度(g / e)1和雷诺数(Re)在4105到20526之间变化。用这种粗糙度元件可以显着提高传热系数。利用实验数据,已经为这种太阳能空气加热器开发了努塞尔数和摩擦因数的相关性,这使努塞尔数和摩擦因数的预测值与实验值之间具有良好的一致性。

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