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CRITICAL DESIGN ISSUES OF THE TOKAMAK COOLING WATER SYSTEM OF ITER'S FUSION REACTOR

机译:热熔反应器托卡马克冷却水系统的关键设计问题

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摘要

U.S. ITER is responsible for the design, engineering, and procurement of the Tokamak Cooling Water System. The TCWS transfers heat generated in the Tokamak to cooling water during nominal pulsed operation-850 MW at up to 150℃ and 4.2MPa water pressure. This water contains radionuclides because impurities (e.g., tritium) diffuse from in-vessel components and the vacuum vessel by water baking at 200-240℃ at up to 4.4MPa, and corrosion products become activated by neutron. The complexity of the TCWS design and fabrication presents unique challenges. During completion of the conceptual design of this one-of-a-kind cooling system, several issues were identified because of complex system requirements. Those issues include flow balancing between over a hundred branch pipelines in parallel to supply cooling water to blankets, determination of optimum flow velocity while minimizing the potential for cavitation damage, design for freezing protection for cooling water flowing through the cryostat (freezing environment), requirements for high-energy piping design, and electromagnetic impact to piping and components. Although the TCWS consists of standard commercial components such as piping with valves and fittings, heat exchangers, and pumps, complex requirements present interesting design challenges. The TCWS conceptual design and strategies for resolving critical design issues are described.
机译:美国ITER负责Tokamak冷却水系统的设计,工程和采购。 TCWS在额定脉冲操作(850 MW),最高150℃和4.2MPa水压的情况下,将托卡马克产生的热量传递给冷却水。该水中含有放射性核素,这是因为通过在200-240℃下以高达4.4MPa的温度进行水烘烤,杂质(例如t)会从容器中的成分和真空容器中扩散出来,腐蚀产物被中子活化。 TCWS设计和制造的复杂性提出了独特的挑战。在完成这种独一无二的冷却系统的概念设计期间,由于复杂的系统要求,发现了几个问题。这些问题包括在平行的一百多个分支管道之间进行流量平衡,以向毯子供应冷却水,确定最佳流速,同时最大程度地减少气蚀的可能性,对通过低温恒温器的冷却水(冷冻环境)进行防冻设计,要求用于高能管道设计,以及对管道和组件的电磁影响。尽管TCWS由标准的商业组件组成,例如带阀门和配件的管道,热交换器和泵,但复杂的需求却带来了有趣的设计挑战。描述了TCWS的概念设计和解决关键设计问题的策略。

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  • 来源
    《Fusion technology》 |2011年第1期|p.156-160|共5页
  • 作者单位

    U.S. ITER, Oak Ridge National Laboratory: 1055 Commerce Park, Oak Ridge, TN 37830-6483;

    U.S. ITER, Oak Ridge National Laboratory: 1055 Commerce Park, Oak Ridge, TN 37830-6483;

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