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Magnetic compatibility of standard components for electrical installations: Computation of the background field and consequences on the design of the electrical distribution boards and control boards for the ITER Tokamak building

机译:电气安装标准组件的磁兼容性:背景场的计算以及对ITER Tokamak建筑物的配电板和控制板设计的影响

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Inside the proposed Tokamak building, the ITER poloidal field magnet system would produce a stray magnetic field up to 70 mT. This is a very unusual environmental condition for electrical installation equipment and limited information is available on the magnetic compatibility of standard components for electrical distribution boards and control boards. Because this information is a necessary input for the design of the electrical installation inside the proposed ITER Tokamak building specific investigations have been carried out by the ITER European Participant Team. The paper reports on the computation of the background magnetic field map inside the ITER Tokamak building and the consequences on the design of the electrical installations of this building. The effects of the steel inside the building structure and the feasibility of magnetic shields for electrical distribution boards and control boards are also reported in the paper. The results of the test campaigns on the magnetic field compatibility of standard components for electrical distribution boards and control boards are reported in companion papers published in these proceedings.
机译:在拟建的Tokamak大楼内,ITER极场磁场系统将产生高达70 mT的杂散磁场。对于电气安装设备来说,这是非常不寻常的环境条件,有关配电板和控制板的标准组件的磁兼容性的信息有限。由于此信息是拟议中的ITER Tokamak建筑物内部电气安装设计的必要输入,因此ITER欧洲参与者小组已进行了具体调查。该论文报告了ITER Tokamak建筑物内部背景磁场图的计算以及该建筑物电气设备设计的后果。该论文还报道了建筑结构中钢的影响以及配电板和控制板的磁屏蔽的可行性。有关配电板和控制板标准组件的磁场兼容性的测试活动结果已在这些会议记录中发表的随附论文中进行了报道。

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