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High field tokamak reactor with force balanced coils as a volumetric neutron source

机译:具有力平衡线圈的高场Tokamak反应器作为容积中子源

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A DT sub-ignited tokamak reactor has bene investigated that has an average neutron wall loading of 1 MW/m~2 and is based on a novel coil concept to generate a strong magnetic field. When the aspect ratio of the coil winding is about 1.7, the forces in the major direction are balanced with the winding pitch of two poloidal rotations round the torus. Thus force balanced coils can be designed which consist of twisted loops in a shape like a figure of cight. Although the coil current has a toroidal components, the poloidal component of the produced matgnetic field is made to be negligible inside the winding by modulating the winding pitch. The net centring force is reduced by a factor of 10 from that exerted on toroidal magnetic coils of the same dimension. The authors designed a steady state tokamak reactor with force blaanced coils. The fusion reaction of Q_DT approx 3.7 is maintained with 58 MW of neutral beam power into a plasma with a major radius of 3.64 m, a minor radius of 0.80 m, an elongation of 1.7, a plasma current of 6.0 MA, an H factor of 2 and a toroidal field on the axis of 8.4 T.
机译:甲DT子点燃托卡马克反应堆好处调查了具有1 MW /米〜2的平均中子壁负荷,并基于新概念线圈以产生强磁场。当线圈绕组的纵横比约为1.7时,主方向上的力与圆环绕组的两个面块转动的绕组间距平衡。因此,可以设计力平衡线圈,其由像扭曲环绕的形状等扭曲环绕。尽管线圈电流具有环形部件,但是通过调节绕组间距,制造了所产生的磁场的面对子组分在绕组内部忽略不计。净定心力从施加在相同尺寸的环形磁线圈上减小10倍。作者设计了力blaanced线圈稳态托卡马克反应堆。 Q_DT约3.7的熔融反应用58mW的中性光束功率保持为具有3.64米的主要半径的等离子体,小半径为0.80米,伸长率为1.7,等离子体电流为6.0 mA,H尺寸2和轴上的环形场8.4吨。

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