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Techno-economic analysis of solar photovoltaic (PV) and solar photovoltaic thermal (PVT) systems using exergy analysis

机译:高级分析太阳能光伏(PV)和太阳能光伏热(PVT)系统的技术经济分析

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This paper assesses the technical and economic viability of a hybrid water-based mono-crystalline silicon (mc-Si) photovoltaic-thermal (PVT) module in comparison with a conventional mc-Si photovoltaic (PV) module installed in Ghana. Analytical models are developed to analyze the technical and economic performance of the systems over a 25-year period. The study shows that although the PVT system is more expensive to setup, it generally performs better than the conventional PV system when both systems are installed with batteries. The estimated average yearly total exergy to load from PV and PVT sub-systems are respectively 159.42 kWh/m(2) and 330.15 kWh/m(2). The levelized cost of exergy (LCOEx) from the PV and PVT basic systems are US$ 0.45/kWh and US$ 0.33/kWh respectively for average peak sun hours (S-h) of 4.6 h (installation site). Varying Sh from 4.6 h to 6.5 h (northmost regions of Ghana) reduces the LCOEx for the PV and PVT systems by approximately 18% and 11% respectively. The PV system however becomes more economically viable than the PVT system when both systems are installed without batteries.
机译:本文评估了混合水基单晶硅(MC-Si)光伏 - 热(PVT)模块的技术和经济可行性,与安装在加纳的传统MC-Si光伏(PV)模块相比。开发了分析模型,以分析25年内系统的技术和经济性能。该研究表明,尽管安装了PVT系统的设置更昂贵,但是当两个系统安装有电池时,它通常比传统的PV系统更好。从PV和PVT子系统负载的估计平均总部分别为159.42千瓦时/ m(2)和330.15 kWh / m(2)。 PV和PVT基本系统的Deertgy(LCOEX)的均衡成本分别为0.45 / kWh和4.6小时(安装现场)的平均峰值时间(S-H)的0.33 / kWh。从4.6小时到6.5小时(加纳的最北部地区)的不同SH减少了PV和PVT系统的LCOEX,分别为约18%和11%。然而,当两个系统安装时,光伏系统变得比PVT系统更具经济可行。

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