为阿尔及利亚半干旱地区的一个农场供电的太阳能-风能混合系统的最佳规模

Z. Benhachani, B. Azoui, R. Abdessemed, M. Chabane
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引用次数: 12

摘要

在本文中,我们研究了安装在阿尔及利亚半干旱地区为农场供电的独立光伏-风能混合系统的规模和经济优化。提出了两种方法。第一种方法基于年平均月值,其中光伏(PV)和风力发电机的大小由每个组件的月平均贡献确定。在第二种方法中,这两个组成部分的大小的确定是基于最糟糕的月份。数据来自当地气象站。所采用的消耗概况与在孤立站点中通常发现的概况相对应。考虑经济参数进行优化,寻找技术经济最优配置。结果表明,研究场地很适合太阳能和风能的应用。日照时数每年超过2000小时。夏季水平面日能量可达7kWh/m2以上,水平面年能量可达1780 kWh/m2左右,最佳倾角可达2000 kWh/m2以上。10米高度年平均风速为3.61m/s, 3、4、5月平均风速大于4m/s。我们的研究表明,将风能系统与太阳能系统结合使用的主要好处是总成本的降低,特别是在光伏阵列和电池的尺寸上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal sizing of a solar-wind hybrid system supplying a farm in a semi-arid region of Algeria
In this paper, we study the sizing and economic optimization of a stand-alone photovoltaic-wind hybrid system with storage batteries, installed in a semi arid region of Algeria supplying a farm. Two methods are developed. The first method is based on the average annual monthly values in which the size of photovoltaic (PV) and wind generators is determined from the average monthly contribution of each component. In the second method, the determination of the size of these two components of the system is based on the worst month. The data comes from the local meteorological station. The consumption profile which has been adopted corresponds to the profile typically found in isolated sites. The optimization was performed taking into account the economic parameter to find the technical and economic optimum configuration. The results show that the studied site is well adapted for solar and wind applications. The sunshine duration is over 2000 hours annually. The energy acquired daily on a horizontal surface can exceed 7kWh/m2 in the summer period and it is annually in the order of 1780 kWh/m2 for a horizontal plane and can exceed 2000 kWh/m2 for an optimal tilt. The average annual wind speed at a 10m height is 3.61m/s and the monthly average speed is over 4m/s in the period of March, April and May. Our study shows that the main benefit of introducing a wind system with a solar one is in the total cost reduction especially in the size of the PV array and battery.
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