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Exergy analysis of thermal energy storage options with nuclear power plants

机译:核电站热能存储选项的火用分析

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Storing excess thermal energy in a storage media, that can later be extracted during peak-load times is one of the better economic options for nuclear power in future. Thermal energy storage integration with light-water cooled and advanced nuclear power plants is analyzed to assess technical feasibility of different options. Various choices of storage media considered in this study include molten salts, synthetic heat transfer fluids, and packed beds of solid rocks or ceramics. Due to limitations of complex process conditions and safety requirements there are only few combinations which have potential integration possibilities. In-depth quantitative assessment of these integration possibilities are then analyzed using exergy analysis and energy density models. The exergy efficiency of thermal energy storage systems is quantified based on second law thermodynamics. This study identifies, examines, and compares different energy storage options for integration with modular NPPs, with the calculated values of energy density and exergy efficiency. The thermal energy storage options such as synthetic heat transfer fluids perform well for light-water cooled NPPs, whereas liquid storage salt show better performance with advanced NPPs as compared to other options. (C) 2016 Elsevier Ltd. All rights reserved.
机译:将多余的热能存储在存储介质中,以后可以在高峰负荷时间提取这些热能,这是将来核电更好的经济选择之一。分析了与轻水冷却和先进核电站的热能存储集成,以评估不同方案的技术可行性。本研究中考虑的多种存储介质选择包括熔融盐,合成传热流体以及固体岩石或陶瓷填充床。由于复杂的工艺条件和安全要求的限制,只有很少的组合具有潜在的集成可能性。然后使用火用分析和能量密度模型对这些整合可能性进行深入的定量评估。基于第二定律热力学来量化热能存储系统的火用效率。这项研究确定,检查并比较了与模块化NPP集成的不同储能方案,以及计算出的能量密度和火用效率值。诸如合成传热流体之类的热能存储选件对于轻水冷却的NPP表现良好,而与其他选件相比,高级NPP的液体储盐表现出更好的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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