Energy Storage and Installed Wind Capacity Requirements for the Substitution of Fossil Fuels in the Electricity Generation Sector

Q4 Energy
E. Michaelides
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引用次数: 4

Abstract

The impending adverse effects of Global Climate Change encourages the substitution of fossil fuels with non-carbon sources for electricity generation. However, while fossil fuel power plants may generate electric power at demand, the most abundant renewable energy sources–wind and solar–are intermittent or periodically variable. This necessitates the development of adequate energy storage at the utility/grid level. Using actual data for the hourly energy demand in the ERCOT electricity grid, this study examines the electricity supply-demand equilibrium and determines the necessary energy storage capacity for the substitution, first, of the coal power plants and, secondly, of all the fossil fuel power plants. The calculations show that, if the natural gas, intermediate-load power plants continue to be available, all coal units may be substituted with wind farms without the need for energy storage. When all the fossil fuel units are to be substituted, significant energy storage capacity is required, approximately 45.3 million m3. The calculations also show that the further development of nuclear energy and additional solar energy units reduce the requirements for energy storage and, also lessen the energy dissipation in the storage-recovery process.
发电行业替代化石燃料的储能和风力发电装机容量要求
全球气候变化迫在眉睫的不利影响鼓励用非碳源替代化石燃料发电。然而,尽管化石燃料发电厂可以根据需求发电,但最丰富的可再生能源——风能和太阳能——是间歇性的或周期性变化的。这就需要在公用事业/电网层面发展足够的能源储存。利用ERCOT电网每小时能源需求的实际数据,本研究检验了电力供需平衡,并确定了替代所需的储能容量,首先是燃煤电厂,其次是所有化石燃料电厂。计算表明,如果天然气、中等负荷发电厂继续可用,所有燃煤机组都可以被风电场取代,而不需要储能。当所有的化石燃料装置都被取代时,需要大量的能量储存能力,大约4530万立方米。计算还表明,核能的进一步发展和太阳能发电机组的增加减少了对储能的需求,也减少了储能-回收过程中的能量耗散。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Nuclear Energy Science and Power Generation Technology
Journal of Nuclear Energy Science and Power Generation Technology Energy-Energy Engineering and Power Technology
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