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Weather Data Analysis of Solar Panels and a Wind Turbine From an Exergetic Point of View Based on Experimental Values over One Year

机译:基于过去一年的实验值从能量的角度出发对太阳能电池板和风力涡轮机的气象数据分析

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In this article the weather data of solar modules and a wind turbine in the Riyadh region, Saudi Arabia were analyzed. In the analysis, experimental values obtained from the system operation over 12 representative days of each month in the period of January to December 2011 were utilized. The wind turbine and the solar panels considered for the assessment are subparts of a hybrid wind-PV system with hydrogen storage, installed at the Sustainable Energy Technology (SET) Center, Mechanical Engineering Department, King Saud University, Riyadh, Saudi Arabia. Various parameters, such as global irradiance, exergy of solar radiation, exergy losses and exergy efficiency of solar modules, and velocity of wind were analyzed and compared at the location. Among the selected days, the maximum average value of the solar irradiance was 631.49 Wm(-2) on July 7 and the corresponding average exergy rate value of the solar radiation was 583.82 Wm(-2) with a conversion efficiency of 4.38%, while the absolute exergy losses was calculated to be 95.61%. The minimum average value of the irradiance and the exergy of solar radiation were measured and calculated to be 350.45 and 326.56 Wm(-2), respectively, with an exergy efficiency of 8.42% on a cloudy day in May 2011. It was calculated through the wind data analysis that the maximum average wind power density available on November 1, 2011 was 807.51 Wm(-2), while the maximum average energy available to the wind turbine for the conversion into the useful output of the inverter was 53,855.74 Wh. It was also determined that the minimum value of the power density was 22.24 Wm(-2) on January 3, 2011 and the corresponding maximum energy available to the turbine for conversion was 1,483.22 Wh. It is expected that the data analysis will be very helpful for the future solar energy utilization and developing exergy wind maps for the region to make an efficient use of these renewable energy sources.
机译:本文分析了沙特阿拉伯利雅得地区太阳能电池组件和风力发电机的气象数据。在分析中,利用了在2011年1月至2011年12月的每个月的12个代表日内从系统运行获得的实验值。评估中考虑的风力涡轮机和太阳能电池板是带有储氢功能的混合风力光伏系统的子部分,安装在沙特阿拉伯利雅得金沙特大学机械工程系可持续能源技术(SET)中心。分析并比较了该位置的各种参数,例如全局辐照度,太阳辐射的能值,太阳能组件的能值损耗和能值效率以及风速。在选定的几天中,7月7日的太阳辐照度最大值的平均值为631.49 Wm(-2),相应的太阳辐照率的平均火用率为583.82 Wm(-2),转换效率为4.38%,而计算出的绝对火用损失为95.61%。在2011年5月的阴天,测得的辐照度的最小平均值和太阳辐射的能值分别为350.45和326.56 Wm(-2),其能值效率为8.42%。风力数据分析显示,2011年11月1日可用的最大平均风能密度为807.51 Wm(-2),而风力涡轮机可转换为逆变器的有用输出的最大平均能量为53,855.74 Wh。还确定在2011年1月3日,功率密度的最小值为22.24 Wm(-2),并且涡轮机可用于转换的相应最大能量为1,483.22 Wh。可以预期,数据分析将对将来的太阳能利用和为该地区开发能动风向图,以有效利用这些可再生能源非常有用。

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