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The differentially-tilted toroidal field coil concept for tokamaks

机译:托卡马克的倾斜倾斜环形场线圈概念

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The implications of the adoption of a tokamak's toroidal field coil characterized by differential tilting in the azimuthal direction are investigated. From an engineering point of view, the major advantage introduced by such coils is a drastic reduction of some components of the electromagnetic forces in certain areas. As a beneficial side-effect, they generate poloidal field, in addition to toroidal field. The former advantage allows for a partial relaxation of the reinforcing structural material required in the machine design, while the poloidal flux generated during the current rise, when used in conjunction with the conventional central solenoid, would allow for discharges of longer duration. This paper presents results obtained by applying the tilting optimization procedure to circular and D-shaped coils, and characterized by geometrical and physical parameters proper of high-field compact tokamaks, since the issue of electromagnetic force reduction is most relevant in these devices.
机译:研究了采用特征为在方位角方向上的倾斜倾斜的托卡马克环形场线圈的含义。从工程的角度来看,这种线圈引入的主要优点是在某些区域内大大减小了电磁力的某些分量。作为有益的副作用,除环形场外,它们还产生极向场。前一个优点是可以部分放松机械设计中所需的增强结构材料,而当与常规中央螺线管结合使用时,电流上升过程中产生的倍数通量将允许更长的放电时间。本文介绍了通过将倾斜优化程序应用于圆形和D形线圈而获得的结果,并以适合于高场紧凑型托卡马克的几何和物理参数为特征,因为电磁力降低问题在这些设备中最为相关。

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