具有倾斜开孔面积的家用箱式太阳灶的热性能评估和热力学分析实验研究

F. Yettou, A. Gama, Narayan Lal Panwar, Ali Malek, B. Azoui
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引用次数: 0

摘要

本文根据 Mullick 的程序[1],用 F1 和 F2 参数对箱式太阳能灶的热性能进行了评定,并利用能量和放能分析对灶具的效率进行了评估。设计的太阳灶具有倾斜的开孔面积,并在阿尔及利亚 Ghardaïa (32.39 °N,3.78 °E,463 米)的可再生能源应用研究单位进行了实现和实验测试。所开发的炊具在盖子上配备了一面反射镜。实验中,炊具是空的,装满了一升或两升水,从太阳时 08:00 到 15:00,在 Ghardaïa 地区撒哈拉沙漠气候条件下,在冬季和夏季晴朗的日子里,对炊具各部件的热曲线进行了评估。根据国际标准建议的两个优点数值和实验研究的评估结果,灶具开孔区域倾斜的配置具有良好的烹饪性能,尤其是在冬季太阳高度较低的情况下;实现的灶具性能保持在国际标准测试的范围内。研究结果还表明,在实验期间,所实现的炊具的日平均能量效率和放能效率分别为 16.2 % 和 0.90 %,这表明能量和放能分析结果之间存在显著差异。因此,开发这种箱式太阳能灶可以提高设计效率,并利用系统的一个位置在更短的时间内烹制食物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation of thermal performance evaluation and thermodynamic analysis of domestic box type solar cooker with inclined aperture area
In this paper, the thermal performances of a box solar cooker were rated with F1 and F2 parameters as per Mullick’s procedure [1], the efficiency of the cooker was evaluated using energy and exergy analysis. The solar cooker was designed with an inclined aperture area, realized and experimentally tested at Applied Research Unit on Renewable Energies of Ghardaïa (32.39 °N, 3.78 °E, 463 m), Algeria. The developed cooker is equipped with one reflector mirror on its lid. The experiments have been carried out with the cooker empty, filled with one or two liters of water from 08:00 to 15:00 solar time, the thermal profiles of various components of the cooker were assessed at Ghardaïa site Sahara climatic conditions on clear days in both winter and summer months. According to the values of two figures of merits suggested by International Standards and evaluated by the experimental studies, the configuration with an inclined aperture area of the cooker resulted in good cooking performances, especially in winter when the sun’s elevation is low; keeping the realized cooker performances in range of the international standard tests. The results of this study indicate also that the average daily energy and exergy efficiency of the realized cooker was 16.2 % and 0.90 % respectively, during the experimental period, which indicate a significant difference between the results of energy and exergy analyses. Thus developing such a box solar cooker can improve the efficiency of the design and use a position of the system to prepare food in a shorter time.
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