高温高温堆除湿实验加热过程研究

Kaiyue Shen, Weizhen Zheng, Shengchao Ma, Huaqiang Yin, Xuedong He, T. Ma
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引用次数: 0

摘要

高温气冷堆(HTGR)中使用了大量的碳材料。碳材料作为一种多孔材料,含有一定量的水分和其他杂质。为了减少高温气堆堆芯内部材料的腐蚀,必须对堆芯进行严格的加热和除湿。目前一次回路加热主要依靠一次泵的旋转将动能转化为热能。显然,目前的方案存在缺陷:(1)由于一次泵旋转产生的热量不足,导致一次回路升温过程缓慢;(2)一次泵的旋转将氦的动能转化为热能,同时一次回路向外散热。由于上述原因,在加热过程中很难达到理想的除湿温度。而在本文中,在新的方案中,将在蒸汽发生器中增加一个额外的热源来加热一次回路。基于COMSOL Multiphysics软件,建立了高温反应器一次回路加热的合理流动和传热模型。对一次回路加热过程的数值分析为高温高温堆除湿方案的选择提供了有益的指导。
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Study on Heating Process of Dehumidifying Experiment in HTGR
A large number of carbon materials are used in high temperature gas-cooled reactor (HTGR). As a kind of porous material, the carbon material contains a certain amount of moisture and other impurities. In order to reduce the corrosion of internal material in reactor core of HTGR, the initial core or post-accident core must be strictly heated and dehumidified. The current primary circuit heating mainly relies on the rotation of the primary pump to convert the kinetic energy into thermal energy. Obviously, the current scheme was flawed: (1) Due to the insufficient heat generated by rotation of the primary pump, the temperature rising process of the primary circuit is sluggish; (2) The rotation of the primary pump converts the kinetic energy into thermal energy of the helium, at the meantime, the primary circuit dissipates heat outward. For the above reasons, it is difficult to achieve the desired dehumidification temperature in the heating process. While in this paper, an additional thermal source will be added to the steam generator to heat the primary circuit in a new scheme. A proper flow and heat-transfer model of heating the primary circuit in high-temperature reactor was established based on software COMSOL Multiphysics. The numerical analysis of the primary circuit heating process provides rewarding guidance for the selection of the dehumidification scheme in HTGR.
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