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Design of force-balanced coils for high field tokamak reactors

机译:高场托卡马克反应堆力平衡线圈的设计

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New toroidal field (TF) coils theoretically optimized for high field tokamak reactors are designed. We had developed a tokamak with force-balanced coils (FBC's) which are helical hybrid coils combining TF coils and a center solenoid (CS) for a reduction of the net electromagnetic force in the direction of major radius. Recently, the FBC concept was extended by the virial theorem of the magnetic field energy and working stress in the coils and their supporting structure. The poloidal rotation number N of the helical coil, which satisfies the uniform stress condition and is named as a virial-limit coil (VLC), is determined by the theorem while it requires a low aspect ratio A for strong toroidal fields. In order to minimize stray fields, the FBC winding is modulated so that its winding direction is nearly vertical and more horizontal in the outer and inner sides of torus, respectively. Thus the configuration of VLC with high elongation κ, large triangularity δ and low aspect ratio is similar to that of CS and TF coil systems in conventional tokamaks, while it can generate strong toroidal fields with much reduced volume of coils and their supporting structure. After the optimal procedure, the maximum working stress in VLC can be reduced to about one third of that in TF coils.
机译:设计了理论上针对高场托卡马克反应堆优化的新型环形场(TF)线圈。我们开发了一种带有力平衡线圈(FBC)的托卡马克,它是将TF线圈和中心螺线管(CS)组合在一起的螺旋混合线圈,用于减小大半径方向上的净电磁力。最近,FBC概念通过线圈及其支撑结构中的磁场能量和工作应力的维里定理得到扩展。满足均匀应力条件的螺旋线圈的极向旋转数N由定理确定,而对于强环形场,它需要较低的长宽比A。为了最小化杂散场,对FBC绕组进行调制,以使其绕组方向在圆环的外侧和内侧分别接近垂直和水平。因此,具有高伸长率κ,大三角形δ和低长宽比的VLC的结构类似于常规托卡马克中的CS和TF线圈系统,但它可以产生强大的环形场,而线圈及其支撑结构的体积大大减少。经过最佳程序后,VLC中的最大工作应力可以减小到TF线圈中的最大工作应力的三分之一。

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