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Electricity systems capacity expansion under cooling water availability constraints

机译:冷却水可用量限制下的电力系统容量扩展

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Large and reliable volumes of water are required to cool thermal power plants. Yet across the world growing demands from society, environmental regulation and climate change impacts are reducing the availability of reliable water supplies. This in turn constrains the capacity and locations of thermal power plants that can be developed. The authors present an integrated and spatially explicit energy systems model that explores optimal capacity expansion planning strategies, taking into account electricity and gas transmission infrastructure and cooling water constraints under climate change. In Great Britain, given the current availability of freshwater, it is estimated that around 32 GW of combined cycle gas turbine capacity can be sustainably and reliably supported by freshwater. However, to maintain the same reliability under a medium climate change scenario, this is halved to 16 GW. The authors also reveal that the current benefit of available freshwater to the power sector is ∼£50 billion between 2010 and 2050. Adapting to expected climate change impacts on the reduced reliability of freshwater resources could add an additional £18–19 billion in system costs to the low-carbon energy transition over the time horizon, as more expensive cooling technologies and locations are required.
机译:冷却火力发电厂需要大量可靠的水。然而,在世界范围内,社会,环境法规和气候变化的影响日益增长的需求正在减少可靠供水的可用性。反过来,这限制了可开发的热电厂的容量和位置。作者提出了一个集成的,空间明确的能源系统模型,该模型探索了最佳的容量扩展规划策略,同时考虑了电力和天然气传输基础设施以及气候变化下的冷却水限制。在英国,考虑到当前可获得的淡水,估计淡水可为约32 GW的联合循环燃气轮机容量提供可持续和可靠的支持。但是,为了在中等气候变化的情况下保持相同的可靠性,将其减半至16 GW。作者还透露,在2010年至2050年之间,电力部门可获得的淡水当前收益约为500亿英镑。适应气候变化对淡水资源可靠性降低的预期影响,可能会增加18190亿英镑的系统成本过渡到低碳能源过渡,因为需要更昂贵的冷却技术和位置。

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