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device for plasma toroidal plasma, particularly device with helical magnetic field stabilization

机译:用于等离子体环形等离子体的设备,特别是具有螺旋磁场稳定的设备

摘要

A toroidal plasma device has a toroidal confinement vessel defining a toroidal space and confining ionized gas therein. A solenoid which links the toroidal space induces a toroidal electric field therein to produce plasma current. A plurality of first windings are wound substantially helically around the vessel substantially equally spaced around its minor circumference. A plurality of second windings are wound substantially helically around the vessel substantially midway between successive first windings. Direct current is passed through the respective first and second windings in opposite directions with the current in the respective first and second windings equal or slightly unbalanced. The currents in the first and second windings produce a helical magnetic field. The combination of the poloidal magnetic field from the plasma current with this helical magnetic field produces a separatrix in the toroidal space, this separatrix defining a closed surface which limits and encloses a region within which closed and nested magnetic flux surfaces exist. The sense of rotation of the first and second windings and the direction of the plasma current produces a variation in the safety fractor q with minor radius at any poloidal angle, whereby the sign of q reverses near the outer edge of the plasma, q being an average over a flux surface of the number of transit made around the torus in the toroidal direction by a magnetic flux line in making a single transit in the poloidal direction. The sign of q is determined by the sense of the direction in which the toroidal transit is made.
机译:环形等离子体装置具有限定环形空间并将离子化气体封闭在其中的环形限制容器。连接环形空间的螺线管在其中感应出环形电场以产生等离子体电流。多个第一绕组大体上以螺旋形缠绕在容器上,并在其短圆周上基本等距分布。多个第二绕组大体上以螺旋形缠绕在容器上,且基本上在连续的第一绕组之间的中间。直流电以相反的方向流过各自的第一和第二绕组,而各自的第一和第二绕组中的电流相等或略微不平衡。第一和第二绕组中的电流产生螺旋磁场。来自等离子体电流的极向磁场与该螺旋磁场的组合在环形空间中产生了分离线,该分离线限定了封闭表面,该封闭表面限制并封闭了存在封闭和嵌套磁通量表面的区域。第一绕组和第二绕组的旋转方向以及等离子流的方向会在安全分束器q中产生一个变化,该半径随半径的变化在任意倍数角处都较小,从而q的符号在等离子的外边缘附近反转,q为在磁极表面上,沿磁极线在圆弧方向上进行一次单次过渡时,在磁通表面上沿环形方向在圆环上进行过渡的次数的平均值。 q的符号取决于进行环形过渡的方向。

著录项

  • 公开/公告号IT7968709D0

    专利类型

  • 公开/公告日1979-08-24

    原文格式PDF

  • 申请/专利权人 GENERAL ATOMIC COMPANY;

    申请/专利号IT19790068709

  • 发明设计人 TIHIRO OHKAWA;

    申请日1979-08-24

  • 分类号G21B;

  • 国家 IT

  • 入库时间 2022-08-22 20:21:37

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