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Energy and exergy analysis of a new flat-plate solar air heater having different obstacles on absorber plates

机译:吸收板上障碍物不同的新型平板太阳能空气加热器的能量和火用分析

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摘要

This study experimentally investigates performance analysis of a new flat-plate solar air heater (SAH) with several obstacles (Type I, Type II, Type HI) and without obstacles (Type IV). Experiments were performed for two air mass flow rates of 0.0074 and 0.0052 kg/s. The first and second laws of efficiencies were determined for SAHs and comparisons were made among them. The values of first law efficiency varied between 20% and 82%. The values of second law efficiency changed from 8.32% to 44.00%. The highest efficiency were determined for the SAH with Type II absorbent plate in flow channel duct for all operating conditions, whereas the lowest values were obtained for the SAH without obstacles (Type IV). The results showed that the efficiency of the solar air collectors depends significantly on the solar radiation, surface geometry of the collectors and extension of the air flow line. The largest irreversibility was occurring at the SAH without obstacles (Type IV) collector in which collector efficiency is smallest. At the end of this study, the energy and exergy relationships are delivered for different SAHs.
机译:这项研究通过实验研究了一种新型平板太阳能空气加热器(SAH)的性能分析,该加热器具有多个障碍(I型,II型,HI型)而没有障碍(IV型)。针对0.0074和0.0052 kg / s的两种空气质量流量进行了实验。确定了SAH的效率的第一定律和第二定律,并进行了比较。第一定律效率的值在20%和82%之间变化。第二定律效率的值从8.32%变为44.00%。对于所有操作条件,在流道管道中使用II型吸水板的SAH的效率最高,而对于无障碍的SAH(IV型)的效率最低。结果表明,太阳能集热器的效率在很大程度上取决于太阳辐射,集热器的表面几何形状和空气流线的延伸。最大的不可逆性发生在没有障碍的SAH(IV型)集热器上,集热器效率最低。在本研究结束时,为不同的SAH提供了能量和火用关系。

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