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A hybrid solar chimney/photovoltaic thermal system for direct electric power production and water distillation

机译:太阳能烟囱/光伏混合热系统,用于直接发电和水蒸馏

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In this work, modifications are made on the conventional solar chimney system in order to improve its economic viability. The two main modifications are the addition of a photovoltaic (PV) system to increase the system total electricity production, and the installation of water pool to cool the PV panels as well as to allow the system to generate freshwater. A mathematical model is developed to test the feasibility of both the conventional and modified systems. It is found that the total system utilization factor for the conventional system is 0.51%, while the utilization factor for the modified system is 4.37%. Parametric analysis is conducted to determine the variables that lead to the best utilization factor. The best results are achieved when the submerged PV panels are closer to the chimney. Furthermore, the performance of the system is tested, taking into account the weather data of a location in the country of Jordan. The results showed that the proposed system produces 45.35% more electricity annually than a standalone PV system installed in the same location. Moreover, the sensitivity analysis conducted shows that the chimney height is the most significant variable influences the system utilization factor. That is, the higher the chimney, the higher the utilization factor. Finally, the economic analysis concludes that the cost of freshwater produced by the system is 1.60 US$ per cubic meter, which is 46.3% cheaper than what is produced using other similar systems. Also, the economic indices of the proposed system show an improvement from that for the conventional solar chimney.
机译:在这项工作中,对常规的太阳能烟囱系统进行了修改,以提高其经济可行性。两个主要的修改是增加了光伏(PV)系统以增加系统的总发电量,并安装了水池以冷却PV面板并允许系统产生淡水。建立了数学模型以测试常规系统和改进系统的可行性。发现传统系统的总系统利用率为0.51%,而改进系统的系统利用率为4.37%。进行参数分析以确定导致最佳利用率的变量。当浸没的光伏面板更靠近烟囱时,可获得最佳结果。此外,考虑到约旦国家/地区某个位置的天气数据,对系统的性能进行了测试。结果表明,与安装在同一位置的独立光伏系统相比,拟议的系统每年可发电45.35%。此外,进行的灵敏度分析表明,烟囱高度是影响系统利用率的最大变量。即,烟囱越高,利用率越高。最后,经济分析得出的结论是,该系统产生的淡水成本为每立方米1.60美元,比使用其他类似系统产生的成本便宜46.3%。而且,所提出的系统的经济指标显示出比传统的太阳能烟囱有所改善。

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