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Hybrid system of the existing central diesel with photovoltaics, technical and economic feasibility, case of Talmine

机译:现有中央柴油的混合系统,具有光伏,技术和经济可行性,塔里林案例

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The supply of electricity to the rural villages in the south of Algeria where the dispersion of population is very important and the increase in the rate of consumption of electrical energy constitute two major problems encountered by the company of electricity in Algeria. Electricity generation in large southern Algeria is based primarily on diesel power production with enormous technical, economic and environmental impacts. The alternative would be ideal with the use of hybrid photovoltaic system. Consequently, we considered the feasibility study of the hybrid system with diesel power and photovoltaic's the best solution and reliable option. Indeed, we studied the actual application of the hybridization of an existing diesel central situated in the south of Algeria in locality of Talmine. Power station and electrical data, weather forecast of southern are used in our hybrid system. Moreover the software HOMER is used in this study to evaluate the feasibility of various hybrid systems essentially with frequent rises in fuel prices in this region of the Sahara. The term hybrid energy system is frequently used to illustrate a power system with more than one type of generator, usually a conventional generator powered by a diesel or gas engine and a renewable energy source such as a photovoltaic (PV). The optimization modeling proves that 100% of power demand can be supplied by hybrid configuration composed of system PV and generator diesel. The cost of generating energy from our system has been found 0.648 S/kWh.
机译:电力在阿尔及利亚南部在人口的分散是非常重要和电能的消耗率的增加而农村供给构成由阿尔及利亚公司用电遇到的两个主要问题。发电南部阿尔及利亚大主要是基于柴油发电生产具有巨大的技术,经济和环境的影响。另一种方法是理想的与使用混合光伏系统。因此,我们认为与柴油发电和光伏的最佳解决方案和可靠的选择了混合动力系统的可行性研究。事实上,我们研究了位于阿尔及利亚的Talmine的地区南部现有的柴油中部杂交的实际应用。电站和电力数据,南部天气预报在我们的混合动力系统。此外,该软件荷马是在这项研究中使用频繁上涨的燃料价格在撒哈拉的这个区域基本上是评估不同的混合动力系统的可行性。术语混合能量系统经常被用于说明与多于一个类型的发电机,通常为传统的发电机供电由柴油或汽油发动机和可再生能源的电力系统,例如光伏(PV)。的最优化建模证明了电力需求的100%,并且通过系统PV和发电机柴油组成的混合配置来提供。从我们的系统已经产生能量的成本发现0.648 S /千瓦时。

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