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Dimensioning the Internal Components of a Hydrogen Storage Power Plant

机译:储氢电站内部组件的尺寸

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Electrical power networks today are undergoing a transition towards integrating an ever increasing proportion of renewable energy sources. However, reducing the number of conventional fossil fuel based power plants introduces additional challenges in terms of grid stability. One of the solutions to this is to implement large-scale electrical energy storages in the grid, which not only provides the required ancillary services to ensure stability, but also compensates for the intermittent behaviour of renewable sources. Such a system is called the Hydrogen Storage Power Plant. In this paper, a futuristic scenario is highlighted, where a 500 MW coal power plant in the eastern German grid is replaced with a Hydrogen Storage Power Plant. The necessary storage elements inside it are dimensioned to provide the required frequency regulating. Next, for two study cases, the response of both types of power plants to disturbances in the network are compared. The results show that the storage power plants can ensure operation of the grid with the same reliability as coal power plants.
机译:当今的电力网络正在朝着整合越来越多的可再生能源的方向过渡。然而,减少传统的基于化石燃料的发电厂的数量在电网稳定性方面带来了额外的挑战。解决此问题的方法之一是在电网中实现大规模的电能存储,这不仅可以提供所需的辅助服务以确保稳定性,还可以补偿可再生能源的间歇性行为。这样的系统称为储氢电厂。在本文中,着重介绍了一种未来派方案,即将德国东部电网中的500 MW燃煤电厂替换为储氢电厂。内部必需的存储元件的尺寸可提供所需的频率调节。接下来,对于两个研究案例,比较了两种类型的发电厂对网络干扰的响应。结果表明,蓄能电厂可以确保电网运行,并具有与燃煤电厂相同的可靠性。

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