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Design and experiment of a new solar air heating collector

机译:新型太阳能空气集热器的设计与实验

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This paper presents the design and experiment of a CTAH (Concentrating Transpired Air Heating) system. A newly designed solar air heating collector comprised of an inverted perforated absorber and an asymmetric compound parabolic concentrator was applied to increase the intensity of solar radiation incident on the perforated absorber. An extensive literature review was carried out to find the vital factors to improve optical and thermal efficiency of solar air heating systems. A stationary optical concentrator has been designed and experimented. Experimental thermal efficiency remained high at higher air flow rates. The average thermal efficiency was found to be approximately 55%-65% with average radiation above 400 W/m(2) for flow rates in the range of 0.03 kg/s/m(2) to 0.09 kg/s/m(2). Experimental results at air flow rates of 0.03 kg/s/m(2) and 0.09 kg/s/m(2) showed temperature rise of 38 degrees C and 19.6 degrees C respectively at a solar radiation intensity of 1000 W/m(2). A comparative performance study shows the thermal performance of CTAH. As the absorber of the CTAH facing downward, it avoids radiation loss and the perforated absorber with tertiary concentrator reduces thermal losses from the system. (c) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了CTAH(集中蒸发空气加热)系统的设计和实验。一种新设计的太阳能空气集热器,它由一个倒置的多孔吸收器和一个不对称的复合抛物线聚光器组成,可以增加入射到多孔吸收器上的太阳辐射强度。进行了广泛的文献综述,以发现提高太阳能空气加热系统的光学和热效率的重要因素。固定式光学集中器已被设计和试验。在较高的空气流速下,实验热效率仍然很高。对于流量范围为0.03 kg / s / m(2)至0.09 kg / s / m(2)的平均辐射高于400 W / m(2)的情况,发现平均热效率约为55%-65% )。在0.03 kg / s / m(2)和0.09 kg / s / m(2)的空气流量下的实验结果表明,在1000 W / m(2)的太阳辐射强度下,温度分别升高38摄氏度和19.6摄氏度)。一项比较性能研究显示了CTAH的热性能。由于CTAH的吸收器朝下,避免了辐射损失,带三级集中器的带孔吸收器减少了系统的热损失。 (c)2016 Elsevier Ltd.保留所有权利。

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