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首页> 外文期刊>International journal of sustainable energy >Techno-economic analysis and modelling of a remote photovoltaic water pumping system in the desert of Tunisia
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Techno-economic analysis and modelling of a remote photovoltaic water pumping system in the desert of Tunisia

机译:突尼斯沙漠中一个远程光伏水泵系统的技术经济分析和建模

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摘要

For estimating the performance of a photovoltaic (PV) water pumping system without battery storage, a simple algorithm has been developed. This simulation program uses the hourly global solar radiation, the hourly ambient temperature and the hourly wind speed as the input, moreover the characteristics of region (latitude, longitude, ground albedo) and characteristics of PV water pumping system (orientation, inclination, nominal PV module efficiency, NOCT, PV array area, PV temperature coefficient, miscellaneous power conditioning losses, miscellaneous PV array losses, temperature of reference, moto-pump efficiency and inverter efficiency). This work allows evaluating the economic interest of a remote PV water pumping systems in the desert of Southern Tunisia, which will have to satisfy an average daily volume of 45m~3 throughout the year compared to another very widespread energy system in the area, the diesel genset (DG), by using the method of the life-cycle cost (LCC). The cost per m~3 of water was calculated for this system. It is found that the LCC for PV system is 0.500TND/m~3 and the LCC DG is 0.837TND/m~3. The present study indicates economic viability of PV water pumping systems in the desert of Tunisia.
机译:为了估计没有电池存储的光伏(PV)水泵系统的性能,开发了一种简单的算法。该模拟程序使用每小时的全球太阳辐射,每小时的环境温度和每小时的风速作为输入,此外还包括区域的特征(纬度,经度,地面反照率)和PV抽水系统的特征(方向,倾斜度,标称PV)模块效率,NOCT,PV阵列面积,PV温度系数,其他功率调节损耗,其他PV阵列损耗,参考温度,机泵效率和逆变器效率)。这项工作可以评估突尼斯南部沙漠中偏远PV抽水系统的经济利益,与该地区另一个非常广泛的能源系统相比,该系统全年必须平均每天日流量45m〜3。发电机组(DG),使用生命周期成本(LCC)的方法。计算该系统每m〜3的水成本。发现光伏系统的LCC为0.500TND / m〜3,LCC DG为0.837TND / m〜3。本研究表明在突尼斯沙漠中光伏水泵系统的经济可行性。

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