光伏阵列性能优化与效率稳定

Y. K. Ramgolam, R. A. Ah King, V. Oree, T. Ramjeawon
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引用次数: 0

摘要

本研究采用基于光伏性能指标分析的方法,研究了水流量对光伏系统性能和输出效率的影响,并进行了量化。太阳能组件表面的水流降低了电池温度和污染效应。这些影响在位于毛里求斯大学工程塔屋顶的并网2.45千瓦光伏系统上进行了研究。一个高温计连接到一个数据记录器,以监测每30秒的太阳能变化。安装了一个管道系统,在光伏组件表面提供水流。利用红外热成像仪研究了水流对模块温度的影响。在国家可再生能源实验室系统顾问模型中对该系统在热带气候条件下的性能进行了测量和建模。进行了财务分析以确定水流系统的可行性。结果表明,水流提高和稳定了能量输出效率。结果表明,污染水平降低30%,能量输出增加约30%。财务分析表明,在大型电厂实施水流系统将使系统具有成本效益,并确保最佳的输出效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing Performance and Stabilizing Efficiency of a Photovoltaic Array
In this research work, the impact of water flow on the performance and energy output efficiency of a photovoltaic system was investigated and quantified using a method based on photovoltaic performance indicator analysis. Water flow on the surface of solar modules decreases cell temperature and soiling effects. These effects were studied on a grid-tied 2.45 kW PV system located on the roof of the Engineering Tower at the University of Mauritius. A pyranometer was connected to a data logger to monitor changes in solar power at 30 s intervals. A piping system was implemented to provide water flow on the surface of the PV modules. An infra-red thermal imager was used to study the effect of water flow on module temperature. The performance of the system under tropical climatic conditions was measured and modeled in National Renewable Energy Laboratory System Advisor Model. A financial analysis was performed to determine the viability of the water flow system. Results show that water flow enhances and stabilizes energy output efficiency. It was observed that a decrease of 30% in soiling level resulted in an increase of approximately 30% in the energy output. A financial analysis showed that implementing a water flow system on a large scale power plant will make the system cost effective and ensure optimum output efficiency.
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