Effect of hot-arid climatic solar energy on monocrystalline photovoltaic performance in Pakistan

A. Khan, S. Memon
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引用次数: 4

Abstract

The domestic dwellings in Pakistan have predominantly implemented low-carbon strategies by harvesting solar energy using photo-voltaic (PV) panels as a long-term vision of low-carbon economy. Most of the urban areas in Pakistan stay hot and humid in an entire year. Consistent solar irradiation at higher temperatures is one of the major factors that affect the power generation performance of monocrystalline PV systems pose challenges to performance and degradation issues. Monocrystalline PV module efficiencies are declining and damaging under the continuous exposure to higher surface day-time temperatures in the different parts of the country. MATLAB simulations were performed based on the validated mathematical approach. This paper investigates the hot arid surface temperature impacts on the performance of PV modules during the summer and winter seasons in Pakistan. The investigations are performed examining the comparative output power generating performance of the PV system. This paper also investigates the influence of installations of PV-system in the North, South, East and West regions of Pakistan. It was examined that the northern areas of Pakistan are more suitable for maintaining the long-term durability of the PV system. Investigations are performed for the peak summer and peak winter days. During summer months, cooling strategies have to be implemented to overcome the heating effects whilst reducing degradation effect on installed PV-system.
巴基斯坦炎热干旱气候太阳能对单晶光伏性能的影响
巴基斯坦的住宅主要实施低碳战略,利用光伏电池板收集太阳能,作为低碳经济的长期愿景。巴基斯坦的大部分城市地区全年都是湿热的。高温下持续的太阳辐照是影响单晶光伏系统发电性能的主要因素之一,对单晶光伏系统的性能和退化问题提出了挑战。在全国不同地区持续暴露于较高的白天表面温度下,单晶光伏组件的效率正在下降和损坏。基于验证的数学方法进行了MATLAB仿真。本文研究了巴基斯坦夏季和冬季炎热干旱的地表温度对光伏组件性能的影响。对光伏发电系统的输出发电性能进行了比较研究。本文还调查了巴基斯坦北部、南部、东部和西部地区安装光伏系统的影响。经审查,巴基斯坦北部地区更适合维持光伏系统的长期耐用性。调查是在夏季和冬季的高峰期进行的。在夏季,必须实施冷却策略以克服加热效应,同时减少对安装的光伏系统的退化影响。
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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