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High Efficiency Nuclear Power Plants using Liquid Fluoride Thorium Reactor Technology

机译:使用液态氟化Thor反应器技术的高效核电站

摘要

An overall system analysis approach is used to propose potential conceptual designs of advanced terrestrial nuclear power plants based on Oak Ridge National Laboratory (ORNL) Molten Salt Reactor (MSR) experience and utilizing Closed Cycle Gas Turbine (CCGT) thermal-to-electric energy conversion technology. In particular conceptual designs for an advanced 1 GWe power plant with turbine reheat and compressor intercooling at a 950 K turbine inlet temperature (TIT), as well as near term 100 MWe demonstration plants with TITS of 950 K and 1200 K are presented. Power plant performance data were obtained for TITS ranging from 650 to 1300 K by use of a Closed Brayton Cycle (CBC) systems code which considered the interaction between major sub-systems, including the Liquid Fluoride Thorium Reactor (LFTR), heat source and heat sink heat exchangers, turbo -generator machinery, and an electric power generation and transmission system. Optional off-shore submarine installation of the power plant is a major consideration.
机译:基于橡树岭国家实验室(ORNL)熔盐反应堆(MSR)的经验并利用闭环燃气轮机(CCGT)的热电电能转换,采用整体系统分析方法来建议先进的地面核电厂的潜在概念设计技术。特别介绍了先进的1 GWe发电厂的概念设计,该发电厂在950 K的涡轮机入口温度(TIT)下进行了涡轮机再热和压缩机中冷,并提出了950 K和1200 K的TITS近期100 MWe示范电厂。通过使用密闭布雷顿循环(CBC)系统代码获得了有关TITS的发电厂性能数据,范围从650到1300 K,该代码考虑了主要子系统之间的相互作用,包括液态氟化Thor反应器(LFTR),热源和热量散热器,涡轮发电机机械以及发电和传输系统。可选的电厂离岸海底安装是主要考虑因素。

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