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Cryostat engineering design and manufacturing of the EAST superconducting Tokamak

机译:EAST超导托卡马克的低温恒温器工程设计与制造

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EAST cryostat is a large single walled vessel surrounding the entire basic machine consisting of central cylindrical section and two end enclosures, a flat base structure with external reinforcements and dome-shaped lid structure. The main function of EAST cryostat provides the thermal barrier between the ambient temperature testing hall and the supercritical helium cooled superconducting magnet with the base pressure of 5 × 10~(-4) Pa. The base structure has been connected with the main support which has eight equally spaced support legs anchored on the concrete base. It also provides feed through penetrations for all the connecting elements inside and outside the cryostat. The cryostat vessel was executed to satisfy the performance and operation requirements. The major loads applied to the cryostat are vacuum pressure, dead weight of vacuum vessel, PFC, thermal shield, and magnet which are total 360 tonnes, seismic events and electromagnetic forces originated by eddy currents. The structural analyses including buckling for the cryostat vessel under the plasma operation condition have been carried out using finite element code. Stress analysis results show that the maximum stress intensity was below the allowable value, and the cryostat had buckling safety factor of over 16. Based on the results, structural robustness of the cryostat vessel has been proved. The engineering design and fabrication has been completed. The paper will summarize the structural analyses, the design activities and give a short description of the fabrication of the cryostat component.
机译:EAST低温恒温器是一个大型单壁容器,围绕着整个基本设备,包括中央圆柱部分和两个端罩,带有外部加强件的扁平基础结构和圆顶形盖结构。 EAST低温恒温器的主要功能是在环境温度测试室与超临界氦冷却的超导磁体之间提供热障,其基本压力为5×10〜(-4)Pa。基本结构已与具有八个等距支撑腿固定在混凝土基座上。它还为低温恒温器内部和外部的所有连接元件提供直通孔。执行低温恒温器容器以满足性能和操作要求。施加在低温恒温器上的主要负载是真空压力,真空容器,PFC,隔热罩和磁体的自重(总计360吨),地震事件和由涡流产生的电磁力。已经使用有限元代码进行了包括等离子运行条件下低温恒温器容器屈曲在内的结构分析。应力分析结果表明,最大应力强度在允许值以下,并且低温恒温器的屈曲安全系数超过16。基于结果,证明了低温恒温器容器的结构坚固性。工程设计和制造已完成。本文将总结结构分析,设计活动并简要介绍低温恒温器组件的制造。

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