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A study on steam cycle optimization for integrating energy storage system to nuclear power plant

机译:蒸汽循环优化研究将储能系统集成到核电站

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As the share of renewable energy will be increasing, there is a growing interest in flexible power sources and energy storage systems due to the intermittent nature of renewable energy. We propose the Energy Storage System (ESS) integrated Nuclear Power Plant (NPP) as a solution. The system operates on load-following by branching the mass flow from the steam cycle to the ESS without changing the reactor thermal output. However, the merging point can be different for heat storing ESS and work storing ESS because the outlet conditions of the ESS vary depending on the type of ESS. In this study, the merging points are categorized into two types, feedwater heater and condenser. At each merging point, cycle optimization is performed while increasing the branch flow into ESS. The optimization goal is to maintain the feedwater temperature at the inlet of a steam generator. The power output and energy delivered to the ESS according to the merging point are estimated. From this study, it was found that when 25% of the inlet mass flow rate to the low-pressure turbine is diverted to ESS, the overall output of the steam cycle is decreased by 44.17% for the heat conversion ESS and 49.95% for the work conversion ESS. (C) 2021 Elsevier Ltd. All rights reserved.
机译:随着可再生能源的份额将增加,由于可再生能源间歇性的性质,对灵活电源和能量存储系统的兴趣日益增长。我们提出了储能系统(ESS)集成的核电厂(NPP)作为解决方案。系统通过将质量流从蒸汽循环分支到ESS的情况下进行负载,而不改变反应器热输出。然而,合并点对于热存储ESS和工作存储ESS可以是不同的,因为ESS的出口条件因ESS的类型而异。在本研究中,合并点分为两种类型,供给水加热器和冷凝器。在每个合并点处,在将分支流入ESS的同时执行周期优化。优化目标是在蒸汽发生器的入口处维持进给水温度。估计根据合并点传递给ESS的电源输出和能量。从本研究开始,当25%的入口质量流量与低压涡轮机转移到ESS时,蒸汽循环的总输出减少了44.17%,为热转换ESS和49.95%工作转换符号。 (c)2021 elestvier有限公司保留所有权利。

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