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Evaluation of various large-scale energy storage technologies for flexible operation of existing pressurized water reactors

机译:对各种大规模能量存储技术的评估,用于灵活的现有加压水反应器的操作

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The lack of plant-side energy storage analysis to support nuclear power plants (NPP), has setup this research endeavor to understand the characteristics and role of specific storage technologies and the integration to an NPP. The paper provides a qualitative review of a wide range of configurations for integrating the energy storage system (ESS) to an operating NPP with pressurized water reactor (PWR). The role of ESS technologies most suitable for large-scale storage are evaluated, including thermal energy storage, compressed gas energy storage, and liquid air energy storage. The methods of integration to the NPP steam cycle are introduced and categorized as electrical, mechanical, and thermal, with a review on developments in the integration of ESS with an operating PWR. By adopting simplified off-design modeling for the steam turbines and heat exchangers, the results show the performance of the PWR steam cycle changes with respect to steam bypass rate for thermal and mechanical storage integration options. Analysis of the integrated system characteristics of proposed concepts for three different ESS suggests that certain storage technologies could support steady operation of an NPP. After having reviewed what have been accomplished through the years, the research team presents a list of possible future works.
机译:缺乏植物侧能量存储分析来支持核电站(NPP),已经建立了这项研究努力了解特定存储技术的特点和作用以及对NPP的整合。本文提供了对广泛配置的定性综述,用于将能量存储系统(ESS)集成到具有加压水反应器(PWR)的操作NPP。评估ESS技术的作用,包括热能储存,压缩气体储能和液体空气储存。将与NPP蒸汽循环集成的方法被引入并分类为电气,机械和热量,并审查ESS与操作PWR集成的开发。通过采用简化的蒸汽涡轮机和热交换器的简化非设计建模,结果表明了PWR蒸汽循环相对于热和机械存储集成选项的蒸汽旁路速率的性能。三种不同ESS概念的综合系统特征分析表明,某些存储技术可以支持NPP的稳定运行。在审查多年来已经完成的内容后,研究团队提出了可能的未来工作的列表。

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