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An option for the integration of solar photovoltaics into small nuclear power plant with thermal energy storage

机译:将太阳能光伏电池集成到带有热能储存装置的小型核电站的一种选择

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This paper is concerned with a concept for integration of solar photovoltaics into a small nuclear power plant. The photovoltaic electricity is firstly converted into heat that subsequently is used for nuclear steam superheating. The hybrid plant is equipped with thermal energy storage. The storage technology under evaluation in this study is borrowed by the concentrated solar power plants. When photovoltaic electricity is available, electric heaters heat molten salts. The steam that is generated in a small modular nuclear reactor is heated with hot molten salts in the external superheater. The hybrid plants and its PV section are modelled and simulated with appropriate software tools. As a result of the higher turbine inlet temperature, the hybrid configuration is more efficient than ordinary NPP. The efficiency of the hybrid nuclear plant can be considerably increased up to the effectiveness level of the modern thermal power plants. The additional power generated by the PV-nuclear plant is approaching the capacity of the standalone NPP. The integrated thermal storage acts as indirect and large electricity storage. Regarding round-trip efficiency and installation costs it surpasses compressed air storage and is competitive with the pumped hydro storage in the absence their geographical and environmental constraints.
机译:本文涉及将太阳能光伏电池集成到小型核电站中的概念。光伏电能首先转换为热量,随后用于核蒸汽过热。混合动力工厂配备有热能储存装置。本研究中评估的存储技术是由集中式太阳能发电厂借鉴的。当有光伏电可用时,电加热器会加热熔融盐。在小型模块化核反应堆中产生的蒸汽在外部过热器中与热熔盐一起加热。使用适当的软件工具对混合电站及其PV区域进行建模和仿真。由于涡轮机入口温度较高,因此混合动力配置比普通NPP效率更高。混合核电站的效率可以大大提高到现代火力发电厂的效率水平。光伏核电站产生的额外电力正接近独立核电厂的能力。集成的热量存储充当间接的大容量电能存储。关于往返效率和安装成本,它在不受到地理和环境限制的情况下,超过了压缩空气存储,并且与抽水蓄能相比具有竞争力。

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