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SYSTEM AND METHOD FOR GENERATING AND MAINTAINING A FIELD WITH A FIELD REVERSED CONFIGURATION (FRC)

机译:用场反向配置(FRC)产生和保持场的系统和方法

摘要

A provided high performance field reversed configuration (FRC) includes a central confinement vessel, two diametrically opposed reversed-field-theta-pinch formation sections coupled to the vessel, and two divertor chambers coupled to the formation sections. A magnetic system includes quasi-dc coils axially positioned along the FRC system components, quasi-dc mirror coils between the confinement chamber and the formation sections, and mirror plugs between the formation sections and the divertors. The formation sections include modular pulsed power formation systems enabling static and dynamic formation and acceleration of the FRCs. The FRC system further includes neutral atom beam injectors, pellet injectors, gettering systems, axial plasma guns and flux surface biasing electrodes. The beam injectors are preferably angled toward the midplane of the chamber. In operation, FRC plasma parameters including plasma thermal energy, total particle numbers, radius and trapped magnetic flux, are sustainable at or about a constant value without decay during neutral beam injection.
机译:所提供的高性能反向电场构型(FRC)包括中央约束容器,与该容器联接的两个沿直径相对的反向场θ捏形成部分以及与该形成部分联接的两个分流器腔室。磁性系统包括沿FRC系统组件轴向定位的准DC线圈,在限制室和编队之间的准DC镜象线圈以及在编队和分流器之间的镜塞。编队部分包括模块化的脉冲动力编队系统,可进行静态和动态编队并加速FRC。 FRC系统还包括中性原子束注入器,颗粒注入器,吸气系统,轴向等离子枪和通量表面偏置电极。射束注入器优选地朝向腔室的中平面倾斜。在操作中,包括等离子热能,总粒子数,半径和捕获的磁通量在内的FRC等离子参数在中性束注入过程中可维持在恒定值左右,而不会衰减。

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