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Analysis of the thermal efficiency of a compound parabolic Integrated Collector Storage solar water heater in Kerman, Iran

机译:伊朗克尔曼的复合抛物线集成集热式存储太阳能热水器的热效率分析

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This paper presents an experimental study involving the design, manufacturing and testing of a prototype integrated collector storage (ICS) solar water heater (SWH) in combination with a compound parabolic concentrator (CPC). The thermal efficiency of the developed system is evaluated in Kerman (latitude 30.2907 degrees N, longitude 57.0679 degrees E), Iran. The developed system is intended to supply hot water for a family in remote rural areas. A 6-month experimental study was undertaken to investigate the performance of the ICS SWH system. The mean daily efficiency and overnight thermal loss coefficient of each experiment were analyzed to examine the appropriateness of these collectors for regions in Kerman. The results showed that mirror has the highest mean daily efficiency (66.7%), followed by steel sheet (47.6%) and aluminum foil (43.7%). The analysis of hourly and monthly operation diagrams for variations of water temperature for the developed ICS system showed that by increasing the amount of radiation entering the water heater, the thermal efficiency of the system decreases, such that the highest efficiency was in April and the lowest in July. With the distribution of radiation intensity in the months of August and September, the thermal efficiency of the system increased. This regional study illustrates how selecting a proper concentrator can increase the thermal efficiency of this solar-based system. It also shows how the temperature gradient between the ambient air and internal water in the storage tank can influence the performance of such systems, and how a controlled amount of hot water withdrawal can affect the system's efficiency. Developing the ICSSWH system is an ideal sustainable solution in countries that benefit from a large amount of solar intensity.
机译:本文介绍了一项实验研究,涉及与复合抛物面聚光器(CPC)结合的原型集成集热器存储(ICS)太阳能热水器(SWH)的设计,制造和测试。在伊朗的克尔曼(北纬30.2907度,东经57.0679度)中评估了开发系统的热效率。开发的系统旨在为偏远农村地区的家庭提供热水。进行了为期6个月的实验研究,以研究ICS SWH系统的性能。分析每个实验的平均日效率和过夜热损失系数,以检查这些收集器在克尔曼地区的适用性。结果表明,镜子的日平均效率最高(66.7%),其次是钢板(47.6%)和铝箔(43.7%)。对已开发的ICS系统的水温变化的每小时和每月运行图的分析表明,通过增加进入热水器的辐射量,系统的热效率降低,因此最高效率发生在4月,最低发生在4月。在七月。随着辐射强度在8月和9月的分布,系统的热效率有所提高。这项区域性研究说明了如何选择合适的集中器如何提高该太阳能系统的热效率。它还显示了储气罐中环境空气和内部水之间的温度梯度如何影响此类系统的性能,以及受控的热水抽取量如何影响系统的效率。在受益于大量太阳能强度的国家中,开发ICSSWH系统是理想的可持续解决方案。

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