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WIND EFFECTS ON POWER GENERATION OF SOLAR FARM IN CALIFORNIA

机译:风对加利福尼亚州太阳能发电的影响

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In comparison to fossil fuels, solar energy is a more sustainable option due to its high availability and less environmental impact. Improving the efficiency of solar farms has been a primary concern of solar energy research. Many studies focus on the control of the tilt angle of solar modules to maximize their solar radiation reception and energy generation. However, an increase in solar radiation is accompanied by an increase in module temperature, which is known to be a significant parameter that reduces the power generation efficiency. Wind is another influential factor that helps Photovoltaic systems maintain a low operating temperature by enhancing the rate of heat transfer. Therefore, solar radiation and wind behavior are both critical parameters that must be considered to optimize solar panel performance. In this paper, the effect of wind conditions on solar panel performance will be examined. The solar panel energy output model will be built by empirically considering the irradiation, ambient temperature, wind speed, and wind direction. The published weather data and energy output data for the year 2017-2018 have been collected from Antelope Valley Solar Ranch, located in Lancaster, California. Four models have been proposed and the results indicate that the model which incorporates the wind conditions has the highest accuracy in approximating the energy production of solar farms. Among the factors that affect the temperature of solar panels and further the efficiency of solar panels including solar irradiation, convection, conduction, wind plays a major role in convective heat transfer. Based on this model, the potential improvement of energy generation via introducing a horizontal installation angle and adjusting this angle monthly according to the wind conditions is further analyzed. These results will help designers improve the design of solar farms by taking into consideration the local weather conditions.
机译:与化石燃料相比,太阳能具有更高的可用性和较小的环境影响,因此是一种更具可持续性的选择。提高太阳能发电场的效率一直是太阳能研究的主要关注点。许多研究集中在控制太阳能电池组件的倾斜角度,以最大程度地提高其太阳能辐射的接收和能量的产生。然而,太阳辐射的增加伴随着模块温度的升高,这被认为是降低发电效率的重要参数。风是另一个影响因素,可通过提高热传递速率来帮助光伏系统维持较低的工作温度。因此,太阳辐射和风的行为都是优化太阳能电池板性能必须考虑的关键参数。在本文中,将研究风况对太阳能电池板性能的影响。将通过经验考虑辐射,环境温度,风速和风向来构建太阳能电池板能量输出模型。已发布的2017-2018年天气数据和能源输出数据来自位于加利福尼亚州兰开斯特的羚羊谷太阳能牧场。已经提出了四个模型,结果表明,结合风况的模型在逼近太阳能发电场的能量产生方面具有最高的精度。在影响太阳能电池板温度以及进一步影响太阳能电池板效率的因素中,包括太阳辐射,对流,传导,风在对流传热中起主要作用。在此模型的基础上,进一步分析了通过引入水平安装角度并根据风况每月调整该角度来潜在地提高能量产生的潜力。这些结果将有助于设计师通过考虑当地的天气条件来改善太阳能发电场的设计。

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