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Mathematical modelling and experimental investigation of solar air collectors with corrugated absorbers

机译:波纹吸收器太阳能集热器的数学建模与实验研究

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This paper presents mathematical modelling and performance evaluation of solar air collectors (SACs) with corrugated absorbers for indoor space heating. Experimental tests were first conducted based on a SAC system to understand its real-time performance. A mathematical model was then developed and validated against the experimental data. A sensitivity study was further implemented to identify the key design factors and investigate their influence on the performance of the SAC. The results showed that the modelling results agreed with the experimental data. The surface absorptance and opening angle of the corrugated absorber were the most significant design variables governing the thermal efficiency of SACs. The other significant variables included the temperature setting for the outlet air from the SAC, the depth ratio of the upper air channel to the overall size of the air space, the slope and length of the SAC, the air flow rate, and the unit area mass of the absorber. Using the opening angle of 60 degrees and surface absorptance of 0.8 can result in an average effective thermal efficiency of 27.14%, which was comparable to that using the opening angle of 120 degrees and the surface absorptance of 0.96. The results obtained can be used to facilitate optimal design of SACs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了用于室内空间供暖的带有波纹吸收器的太阳能空气收集器(SAC)的数学建模和性能评估。首先基于SAC系统进行实验测试以了解其实时性能。然后开发了数学模型,并针对实验数据进行了验证。进一步进行了敏感性研究,以识别关键设计因素并调查它们对SAC性能的影响。结果表明,建模结果与实验数据吻合。波纹吸收器的表面吸收率和开口角是控制SAC热效率的最重要的设计变量。其他重要变量包括SAC出口空气的温度设置,上部空气通道与空气空间总尺寸的深度比,SAC的斜率和长度,空气流量以及单位面积吸收体的质量。使用60度的开度角和0.8的表面吸收率可以产生27.14%的平均有效热效率,这与使用120度的开度角和0.96的表面吸收率相当。获得的结果可用于促进SAC的优化设计。 (C)2019 Elsevier Ltd.保留所有权利。

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