环境因素与光伏电池板的性能:实验研究

Louis T.A., Tertsea I.
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摘要

随着对可再生能源需求的增加,光伏(PV)板已成为收集太阳能的主要替代品。然而,光伏板的效率和性能与环境条件密不可分。本研究探讨了环境变量对光伏(PV)板性能的影响。通过控制测试,研究人员调查了太阳辐照度、温度、风速、湿度和灰尘沉积等关键环境参数。现代传感器和数据收集方法被用来监测这些变量如何影响光伏电池板的输出。统计工具用于确定环境因素与光伏电池板效率之间的关系。研究结果表明,环境变量与光伏电池板性能之间存在明确的关系。太阳辐照度被认为是能源生产的主要指标,而温度则对电流输出有复杂的影响。研究发现,风速、相对湿度和灰尘沉积对电池板性能有明显的不利影响。这项研究强调了环境条件与电池板效率之间的复杂联系,从而增加了人们对光伏系统的了解。研究结果凸显了在建设和运行光伏装置时针对具体地点进行考虑以确保最佳能源输出和系统寿命的重要性。文章的研究结果对太阳能行业和研究人员都有实际意义,有助于开发改善光伏电池板性能的方法,为可持续能源领域做出贡献。
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Environmental Factors and the Performance of PV Panels: An Experimental Investigation
With the increase in demand for renewable energy, photovoltaic (PV) panels have emerged as a major alternative for harvesting solar energy. However, the efficiency and performance of PV panels are inextricably related to environmental conditions. This study examined the effect of ambient variables on the performance of photovoltaic (PV) panels. Through controlled tests, the researchers investigated critical environmental parameters such as sun irradiance, temperature, wind speed, humidity, and dust deposition. Modern sensors and data-gathering methods were used to monitor how these variables affected PV panel output. Statistical tools were used to determine the relationship between environmental factors and PV panel efficiency. The findings showed a clear relationship between environmental variables and PV panel performance. Solar irradiance was recognized as a major indicator for energy generation, while temperature had complex implications on current output. Wind speed, relative humidity, and dust deposition were discovered to have discernible detrimental effects on panel performance. This study adds to the increasing knowledge about PV systems by highlighting the complex links between ambient conditions and panel efficiency. The findings highlight the importance of site-specific considerations in building and running PV installations to ensure optimal energy output and system longevity. The article's results have practical consequences for both the solar energy sector and researchers, leading to the development of ways to improve PV panel performance and contribute to the sustainable energy landscape.
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