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Design of the poloidal field system for KTX 被引量:1
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作者 Wei YOU Hong LI +14 位作者 Wenzhe MAO Wei BAI Cui TU Bing LUO Zichao LI Yolbarsop ADIL Jintong HU Bingjia XIAO qingxi yang Jinlin XIE Tao LAN Adi LIU Weixing DING Chijin XIAO Wandong LIU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第11期126-134,共9页
The design of the poloidal field (PF) system includes the ohmic heating field system and the equilibrium (EQ) field system, and is the basis for the design of a magnetic confinement fusion device. A coupling betwe... The design of the poloidal field (PF) system includes the ohmic heating field system and the equilibrium (EQ) field system, and is the basis for the design of a magnetic confinement fusion device. A coupling between the poloidal and plasma currents, especially the eddy current in the stabilizing shell, yields design difficulties. The effects of the eddy current in the stabilizing shell on the poloidal magnetic field also cannot be ignored. A new PF system design is thus proposed. By using a low-μ material (μ = 0.001, ε = 1) instead of a conductive shell, an electromagnetic model is established that can provide a continuous eddy current distribution on the conductive shell. In this model, a 3D time-domain problem with shells translates into a 2D magnetostatic problem, and the accuracy of the calculation is improved. Based on these current distributions, we design the PF system and analyze how the EQ coils and conductive shell affect the plasma EQ when the plasma ramps up. To meet the mainframe design requirements and achieve an efficient power-supply design, the position and connection of the poloidal coils are optimized further. 展开更多
关键词 RFP KTX poloidal field system electromagnetic design
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