Performance Analysis of Monthly Averages Solar Radiation Estimation Models for Teknaf Bangladesh

Mohammad Nurul Absar, Md. Fokhrul Islam
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引用次数: 1

Abstract

To establish solar based renewable energy technology, it’s important to evaluate the accurate solar radiation data of particular location due to solar power plant output depend on solar radiation. In this study, Calculating solar radiation in Teknaf area of Bangladesh by using last five year’s monthly average temperature and sunshine hour’s collected from the Teknaf station under Bangladesh Meteorological Department, Dhaka. However, Maximum weather station of the Bangladesh Meteorological Department cannot record direct solar radiation data. To estimate monthly average solar radiation, several equations were considered which is developed based on Temperature and Sunshine hours. Evaluated the performance of this equation done by applying the statistical analysis to select the suitable model for considering the location. Finally comparative studies between the estimated monthly average solar radiations and collected data from National Aeronautics and Space Administration (NASA) surface meteorology and Solar Energy (SSE) that have record the global solar radiation on the horizontal surface, measured from the orbiter. The result shows that sunshine hour’s methods provide better performance than temperature methods and Samuel and Ogelman et al. sunshine hour’s based models are appropriate for Teknaf because of better statistical model performance analysis.
Teknaf孟加拉国月平均太阳辐射估算模型的性能分析
由于太阳能发电厂的发电量依赖于太阳辐射,因此要建立基于太阳能的可再生能源技术,评估特定位置的准确太阳辐射数据是很重要的。本研究利用孟加拉国气象局设在达卡的Teknaf站近5年的月平均气温和日照时数,计算了孟加拉国Teknaf地区的太阳辐射。然而,孟加拉国气象局的最大气象站不能直接记录太阳辐射数据。为了估计月平均太阳辐射,考虑了几个基于温度和日照时数的方程。应用统计分析方法对该方程的性能进行评价,选择合适的模型来考虑位置。最后,将估计的月平均太阳辐射与美国国家航空航天局(NASA)地面气象和太阳能(SSE)收集的数据进行比较研究,这些数据记录了轨道飞行器测量的水平面上的全球太阳辐射。结果表明,日照时数方法的性能优于温度方法,Samuel和Ogelman等人基于日照时数的模型由于更好的统计模型性能分析而适合Teknaf。
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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