热管作为被动冷却系统驱动新一代核电站

Ziba Zibandeh Nezam, Bahman Zohuri
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引用次数: 3

摘要

热管(HP)系统技术自20世纪60年代左右在拉斯阿拉莫斯国家实验室发明以来,在热液压领域工作的科学家和工程师中非常有名。它是一种被动传热/热交换器系统,以恒定或可变系统的形式出现,没有任何机械内置的运动部件。在过去的几十年里,人们提出了这种被动传热系统及其在核动力反应堆堆芯内的扩展。使用这三种元素中的任何一种作为冷却系统的钠、钾或汞型热管系统已被许多裂变反应堆和最近的聚变反应堆特别是磁约束聚变(MCF)的制造商考虑过。热管作为被动冷却的集成可以在新一代核动力反应堆系统中看到,这些系统是为非常规应用领域而设计的,例如用于深空或星系探索的天基飞行器,行星表面发电厂以及地球上偏远地区的运行。新一代核微反应堆(NMR)形式的小型模块化反应堆(SMR),这种类型的裂变反应堆将碱金属热管集成到一系列斯特林转换器或热电转换器上发电,为能量转换系统产生13kwt至3Mwt的热能。
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Heat Pipe as a Passive Cooling System Driving New Generation of Nuclear Power Plants
The technology of the Heat Pipe (HP) system is very well known for scientists and engineers working in the field of thermal-hydraulic since its invention at Las Alamos Nation Laboratory around the 1960s time frame. It is a passive heat transfer/heat exchanger system that comes in the form of either a constant or variable system without any mechanical built-in moving part. This passive heat transfer system and its augmentation within the core of nuclear power reactors have been proposed in the past few decades. The sodium, potassium, or mercury type heat pipe system using any of these three elements for the cooling system has been considered by many manufacturers of fission reactors and recently fusion reactors particularly Magnetic Confinement Fusion (MCF). Integration of the heat pipes as passive cooling can be seen in a new generation of a nuclear power reactor system that is designed for unconventional application field such as a space-based vehicle for deep space or galaxy exploration, planetary surface-based power plants as well as operation in remote areas on Earth. With the new generation of Small Modular Reactor (SMR) in form of Nuclear Micro Reactors (NMR), this type of fission reactor has integrated Alkali metal heat pipes to a series of Stirling convertors or thermoelectric converters for power generation that would generate anywhere from 13kwt to 3Mwt thermal of power for the energy conversion system.
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