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首页> 外文期刊>Solar Energy >Experimental Investigation Of Optimum Thermohydraulic Performance Of Solar Air Heaters With Metal Rib Grits Roughness
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Experimental Investigation Of Optimum Thermohydraulic Performance Of Solar Air Heaters With Metal Rib Grits Roughness

机译:金属肋粗度的太阳能空气加热器最佳热工水力性能的实验研究

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Artificial roughness has been found to enhance the heat transfer from the collector plate to the air in a solar air heater. However, it would result in increase in frictional losses and hence, power required by fan or blower. This paper presents the results of an experimental investigation of thermohydraulic performance of roughened solar air heaters with metal rib grits. The range of variation of system and operating parameters is investigated within the limits of, e/D_h: 0.035-0.044, pie: 15-17.5 and 1/s as 1.72, against variation of Reynolds number, Re: 3600-17000. The study shows substantial enhancement in thermal efficiency (10-35%), over solar air heater with smooth collector plate. The thermal efficiency enhancement is also accompanied by a considerable increase in the pumping power requirement due to the increase in the friction factor (80-250%). The optimum design and operating conditions have been determined on the basis of thermohydraulic considerations. It has been found that, the systems operating in a specified range of Reynolds number show better thermohydraulic performance depending upon the insolation. A relationship between the system and operating parameters that combine to yield optimum performance has been developed.
机译:已经发现人造粗糙度可以增强太阳能空气加热器中从集热板到空气的热传递。但是,这将导致摩擦损失增加,从而导致风扇或鼓风机所需的功率增加。本文介绍了带有金属肋条的粗糙太阳能空气加热器热工水力性能的实验研究结果。针对雷诺数的变化(Re:3600-17000),在e / D_h:0.035-0.044,pie:15-17.5和1 / s为1.72的范围内研究系统和操作参数的变化范围。研究表明,与带有光滑集热板的太阳能空气加热器相比,其热效率有了显着提高(10-35%)。由于摩擦系数的增加(80-250%),热效率的提高还伴随着泵浦功率需求的显着增加。最佳设计和运行条件是根据热工液压的考虑确定的。已经发现,在规定的雷诺数范围内运行的系统根据日照表现出更好的热工性能。已经开发出系统和结合起来以产生最佳性能的操作参数之间的关系。

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