Thermal Performance of Double Pass Solar Air Collector: Numerical and Experimental Investigation

Yousef Belloufi, Amar Rouag, Faris Aissaoui, Abdelmoumene-Hakim Benmachiche, Abdelhfid Brima
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Abstract

Abstract In this research study, the development of a theoretical model to estimate the efficiency of a double pass solar air heater (DPSAH) was the main objective. The mathematical model was compared to experimental results and found to be in agreement, both qualitatively and quantitatively. The model used energy balance equations to determine the outlet temperature and could solve the temperature equations of each component of the heater simultaneously. A matrix inversion method was used for this purpose. The study found that increasing the Nusselt number led to an increase in energy efficiency, but also caused a drop in outlet temperature at any solar radiation. The mass flow rate (MFR), with larger flow rates resulting in better efficiencies, had a significant impact on the double pass air heater’s efficiency. Thus, increasing of DPSAH’s length increases its thermal performances and reach its maximum values for L=9m. These findings could be beneficial in selecting the most efficient design parameters for DPSAH.
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双通道太阳能空气集热器的热性能:数值与实验研究
摘要本研究的主要目的是建立估算双通道太阳能空气加热器(DPSAH)效率的理论模型。将数学模型与实验结果进行了比较,发现在定性和定量上都是一致的。该模型采用能量平衡方程确定出口温度,并能同时求解加热器各部件的温度方程。为此采用了矩阵反演法。研究发现,增加努塞尔数会导致能源效率的提高,但也会导致任何太阳辐射下出口温度的下降。质量流量(MFR)对双通道空气加热器的效率有显著影响,其流量越大,效率越高。因此,随着dpah长度的增加,其热性能也随之增加,并在L=9m时达到最大值。这些发现可能有助于为DPSAH选择最有效的设计参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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