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An Optimized Structure Design of the HT-7U Vacuum Vessel
Authors:YAO Da-mao  SONG Yun-tao  Du Shijun  WU Wei-yue  WU Song-tao  HE Ye-Xi
Abstract:The vacuum vessel of the HT-7U superconducting tokamak will be a fully-welded structure with a double-wall. The space between the double-wall will be filled with borated water for neutron shielding. Non-circular cross-section is designed for plasma elongating. Horizontal and vertical ports are designed for diagnosing, vacuum pumping, plasma heating and plasma current driving, etc. The vacuum vessel consists of 16 segments. It will be baked out at 250 ℃ to obtain a clean wall. When the machine is in operation, both the hot wall (the wall temperature is around 100 ℃) and the cold wall ( wall temperature is in normal equilibrium) are considered. The stress caused by thermal deformation and the electromagnetic (EM) loads caused by 1.5 MA plasma disruption in 3.5 T magnetic field have to be taken into account in the design of the HT-7U vacuum vessel. Finite element method was employed for structure analysis of the vacuum vessel.
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