根据乍得两个主要城市:乍得中部的蒙戈和南部的帕拉的太阳能数据,对太阳能电能进行数学预测

Ali Ramadan Ali, Mahamat Kher Nediguina, Adoum Kriga, M. Gouajio, Adoum Danao Adile, Fabien Kenmogne, A. M. Tahir
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引用次数: 0

摘要

本研究对乍得的两个主要城市--中部的蒙戈市和南部的帕拉市--的太阳能进行了比较研究,目的是了解这两个城市中哪一个更适合安装太阳能发电站,同时考虑到这两个城市的地区气候和环境条件。为此,对长期太阳辐照度数据和温度进行了图形统计分析。所使用的数据是根据美国国家航空航天局(NASA)和光电地理信息系统(PGIS)为乍得中部的蒙戈和南部的帕拉提供的十年(2010-2020 年)太阳辐射数据。绘制了月平均辐照度的形状,并通过均方分析使用正弦函数对其进行了近似。温度数据也是通过同样的方法获得的,并绘制了温度与辐照度的关系图,以便找到两者之间适当的数学关系。统计分析采用了最大熵原理。结果发现,3 月份的辐照度最大,帕拉为 226.26 千瓦时/平方米,芒果为 219.355 千瓦时/平方米;8 月份的辐照度最小,帕拉为 151.67 千瓦时/平方米,芒果为 158.9 千瓦时/平方米。此外,还获得了温度数据,并绘制了月平均数据图,结果表明,除三月份和四月份外,两个地点的辐照度和温度形状相似。然后发现频率和概率密度分布在相同的日期达到最大值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical Prediction of Electrical Solar Energy Based on Solar Data for Two Main Cities of Chad: Mongo in the Centre and Pala in the South of Chad
The comparative study of the solar powers between two main cities of Chad is performed in the present work, the city of Mongo in the Centre and that of Pala in the South, with an aim of knowing which one of the two cities is more adequate for an installation of the solar power station, taking into account the regional climatic and environmental conditions of both cities. To do this, the graphical statistical analysis of long-term solar irradiance data and temperature is performed. The data used is that of the decade (2010-2020), based on solar radiation data handed by the National Aeronautics and Space Administration (NASA) and Photovoltaic Geographical Information System (PGIS) for Mongo in the centre and Pala in the south of Chad. The shape of the mean monthly irradiation has been plotted and has been approximated using the sinusoidal function through the mean square analysis. The temperature data has been also obtained by the same process and plotted versus irradiance in order to find the adequate mathematical relationship between them. For the statistical analysis, the maximum entropy principle has been used. As results, it is found that the maximum irradiance is obtained in March, which are 226.26kWh/m2 for Pala and 219.355kWh/m2 for Mongo, while the minimum irradiances are obtained in August, which are 151.67kWh/m2 for Pala and 158.9kWh/m2 for Mongo. The temperature data is also obtained and the mean monthly data plotted, showing that apart for the months of March and April, the the shapes of irradiation and temperatures are similar for both sites. Then it is found that the frequency and probability density distributions reach their maximum at the same dates.
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