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Floating photovoltaic plants on artificial accumulations — Example of Jablanica Lake

机译:在人工堆积物上漂浮的光伏电站— Jablanica湖的例子

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The paper analyzes the problem of the construction of utility-scale solar photovoltaic power plants (US-PV). Two main problems of this construction are: occupying usable areas and the connection and integration of the power plant into the electricity system. The construction of US-PV power plants on water accumulations of existing hydro power plants was analyzed, as one of the solutions to these problems. The Jablanica Lake was taken as an example. Jablanica Lake is an artificial accumulation lake on the river Neretva with an area of 13 km2within the hydroelectric power plant (HPP) Jablanica with 180 MW of installed power. It was shown that on a surface of less than 3% of the total area of the accumulation of HPP Jablanica, there could be built a floating photovoltaic (PV) plant with a power of 30 MW. This power would add another generator of 30 MW to HPP Jablanica, which would increase the current number of the 6 generators to 7. This would enable significantly better exploitation of the Neretva and Rama river basins, and increase production in the summer period with a decrease in lake level oscillations. Suitable locations for the installation of floating solar power plant were analyzed. Locations are selected on the basis of requirements for the preservation of existing lake functions, and provide the possibility of installing a 3 MW power plant. 10 of these plants, connected by a 20 kV power grid, represent one US-PV 30 MW plant, which at one point connects to the transmission network of 220 kV. The specifications of one 3 MW power plant are given in terms of the required area, number of modules and number of inverters. A preliminary techno-economic analysis of the total plant was carried out. In this analysis, the possible production, the indicative price of the plant, and the price of the produced kWh of electricity are calculated.
机译:本文分析了公用事业规模的太阳能光伏电站(US-PV)的建设问题。这种结构的两个主要问题是:占用可用区域以及将发电厂连接和集成到电力系统中。作为解决这些问题的方法之一,分析了利用现有水力发电厂的水积聚建设的US-PV电厂。以Jablanica湖为例。 Jablanica湖是Neretva河上的人工蓄积湖,面积13公里 2 在Jablanica的水力发电厂(HPP)内,装机功率为180 MW。结果表明,在小于HPP Jablanica累积总面积的3%的表面上,可以建造一个功率为30 MW的浮动光伏(PV)工厂。该功率将为HPP Jablanica增加30 MW的另一台发电机,这将使6台发电机的当前数量增加到7台。这将使Neretva和Rama流域的开发得到更好的利用,并在夏季减少产量并增加产量在湖面的振荡中。分析了安装浮动式太阳能发电厂的合适位置。根据保留现有湖泊功能的要求选择位置,并提供安装3兆瓦发电厂的可能性。这些电厂中的10座由20 kV电网连接,代表一台US-PV 30 MW电厂,该电厂在一点上连接到220 kV的传输网络。根据所需面积,模块数量和逆变器数量,给出了一个3 MW发电厂的规格。对整个工厂进行了初步的技术经济分析。在此分析中,计算了可能的发电量,电厂的指示性价格以及所产生的kWh电力的价格。

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