首页> 外文期刊>Fusion Science and Technology >APPLICATION OF COMPUTATIONAL FLUID DYNAMICS FOR THE SIMULATION OF CRYOGENIC MOLECULAR SIEVE BED ABSORBER OF HYDROGEN ISOTOPES RECOVERY SYSTEM FOR INDIAN LLCB-TBM
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APPLICATION OF COMPUTATIONAL FLUID DYNAMICS FOR THE SIMULATION OF CRYOGENIC MOLECULAR SIEVE BED ABSORBER OF HYDROGEN ISOTOPES RECOVERY SYSTEM FOR INDIAN LLCB-TBM

机译:计算流体动力学在模拟印度LLBC-TBM氢同位素回收系统的低温分子筛床吸收器中的应用

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摘要

One of the most challenging tasks in the design of the fuel cycle system lies in the effective design of Tritium Extraction System (TES) which involves proper extraction and purification of tritium in the fuel cycle of the fusion reactor. Indian Lead Lithium cooled Ceramic Breeder Test Blanket Module (LLCB-TBM) would extract hydrogen isotopes through Cryogenic Molecular Sieve Bed (CMSB) adsorber system. A prototype Hydrogen Isotopes Recovery System (HIRS) is being developed to validate the concepts for tritium extraction by adsorption mass transfer mechanism.In this study, a design model has been developed and analyzed to simulate the adsorption mass transfer kinetics in a fixed bed adsorption column. The simulation leads primarily to effective design of HIRS, which is a state-of-the-art technology. The paper describes the process simulation approach and the results of Computational Fluid Dynamics (CFD) analysis. The effects of different operating conditions are studied to investigate their influence on the hydrogen isotopes adsorption capacity. The results of the present simulation study would be used to understand the best optimized transport phenomenon before realizing the TES as a system for LLCB-TBM
机译:燃料循环系统设计中最具挑战性的任务之一是the提取系统(TES)的有效设计,其中涉及聚变反应堆燃料循环中cycle的适当提取和纯化。印度铅锂冷却陶瓷育种试验毯模块(LLCB-TBM)将通过低温分子筛床(CMSB)吸附器系统提取氢同位素。正在开发原型氢同位素回收系统(HIRS)以验证通过吸附传质机理萃取extraction的概念。在本研究中,已开发并分析了一个设计模型,以模拟固定床吸附塔中的吸附传质动力学。 。仿真主要是为了对HIRS进行有效设计,这是一种最新技术。本文介绍了过程仿真方法以及计算流体动力学(CFD)分析的结果。研究了不同操作条件的影响,以研究它们对氢同位素吸附容量的影响。在将TES实现为LLCB-TBM系统之前,本模拟研究的结果将用于了解最佳的最佳运输现象。

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  • 来源
    《Fusion Science and Technology》 |2015年第3期|567-570|共4页
  • 作者单位

    Inst Plasma Res, Gandhinagar 382428, Gujarat, India;

    Inst Plasma Res, Gandhinagar 382428, Gujarat, India;

    Inst Plasma Res, Gandhinagar 382428, Gujarat, India;

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