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Thermal analysis of a cryogenic distillation column for hydrogen isotopes separation

机译:用于氢同位素分离的低温蒸馏塔的热分析

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Cryogenic distillation (CD) of hydrogen in combination with Liquid Phase Catalytic Exchange (LPCE) or Combined Electrolytic Catalytic Exchange (CECE) process is used for tritium removal/recovery from tritiated water from fission rectors like CANDU and is the proposed technology for ITER/DEMO. Tritiated water is being obtained after long time operation of CANDU reactors, or in case of ITER mainly by the Detritiation System.The cryogenic system of the Experimental Pilot plant for tritium and deuterium separation from ICSI Rm. Valcea consists of four distillation columns and significant effort is required in various batch mode operations for achieving high tritium concentration.Some problems have been experienced with the fourth column of the cascade regarding the heat transient transfer during start-up. This paper intent is to present a CAE/FEA (Computer Aided Engineering/Finite Element Analysis) thermal simulation of the column during the transitory thermal regime in order to investigate the temperature distribution along the column and its connections to other equipment. The simulation is done on the as-built design of the column and takes in consideration the actual configuration. This work provides an important platform to understand the thermal phenomena during cool down of a cryogenic distillation column besides finding the failures in thermal insulation or design flaws. The results of the simulation can be used as lessons-learned for future design work of cryogenic systems like Tritium Removal Facility from Cernavoda Nuclear Power Plant or ITER/DEMO Isotope Separation System.
机译:氢的低温蒸馏(CD)与液相催化交换(LPCE)或组合电解催化交换(CECE)工艺结合使用,可从裂变整流器(如CANDU)的ti化水中去除/回收tri,这是ITER / DEMO的拟议技术。经过CANDU反应器长时间运行后或在ITER情况下,by化水主要通过除垢系统获得。实验性中试装置的低温系统用于从ICSI Rm中分离tri和氘。 Valcea由四个蒸馏塔组成,在各种分批模式操作中,要想达到高tri浓度,都需要付出很大的努力。级联的第四塔在启动过程中的瞬态传热方面遇到了一些问题。本文的目的是在过渡热工况下对色谱柱进行CAE / FEA(计算机辅助工程/有限元分析)热模拟,以研究沿色谱柱的温度分布及其与其他设备的连接。模拟是在色谱柱的竣工设计中完成的,并考虑了实际配置。这项工作为发现低温蒸馏塔冷却过程中的热现象提供了重要的平台,除了可以发现绝热故障或设计缺陷。仿真结果可以作为低温系统未来设计工作的经验教训,例如来自切尔纳沃达核电站的Tri去除设施或ITER / DEMO同位素分离系统。

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