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Formation of Electron Internal Transport Barrier in Edge Plasma of Small Size Divertor Tokamak

机译:小型分流器托卡马克边缘等离子体中电子内部输运势垒的形成

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The formation of electron internal transport barrier (EITB) during using counter-neutral beam injection (NBI) heating in the edge plasma of small size divertor tokamak can be simulated by using fluid transport code B2SOLPS0.5.2D. The results of simulations give us the following: (1) Plasma heating with counter-neutral beam injection leads to, strong, parabola type electron internal transport barrier (EITB) was formed in the edge plasma of small size divertor tokamak. (2) In case of plasma heating by counter-neutral beam injection, the radial electric field shear (E_r-gradient) was increased, while electron transport coefficients were reduced in conjunction with the formation of electron internal transport barrier (EITB). (3) The plasma heating by counter-neutral beam injection play significantly role in redistribution of parallel (toroidal) velocity in edge plasma of small size divertor tokamak.
机译:可以使用流体传输代码B2SOLPS0.5.2D模拟在小尺寸偏滤器托卡马克的边缘等离子体中使用反中性束注入(NBI)加热期间电子内部传输势垒(EITB)的形成。仿真结果为我们提供了以下内容:(1)带有反中性束注入的等离子体加热导致在小尺寸偏滤器托卡马克的边缘等离子体中形成了强烈的抛物线型电子内部传输势垒(EITB)。 (2)在通过反中性束注入进行等离子体加热的情况下,径向电场剪切力(E_r-梯度)增大,而电子传输系数随着电子内部传输势垒(EITB)的形成而降低。 (3)反中性束注入引起的等离子体加热在小尺寸偏滤器托卡马克边缘等离子体的平行(环向)速度的重新分布中起重要作用。

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