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首页> 外文期刊>Physical review letters >Effects of Magnetic Shear on Toroidal Rotation in Tokamak Plasmas with Lower Hybrid Current Drive
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Effects of Magnetic Shear on Toroidal Rotation in Tokamak Plasmas with Lower Hybrid Current Drive

机译:电磁剪切对低混合电流驱动的托卡马克等离子体中环面旋转的影响

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摘要

Application of lower hybrid (LH) current drive in tokamak plasmas can induce both co- and counter-current directed changes in toroidal rotation, depending on the core q profile. For discharges with q_0 < 1, rotation increments in the countercurrent direction are observed. If the LH-driven current is sufficient to suppress sawteeth and increase q_0 above unity, the core toroidal rotation change is in the cocurrent direction. This change in sign of the rotation increment is consistent with a change in sign of the residual stress (the divergence of which constitutes an intrinsic torque that drives the flow) through its dependence on magnetic shear.
机译:较低的混合(LH)电流驱动在托卡马克等离子体中的应用可以诱导环向旋转中的顺流和逆流定向变化,具体取决于铁心q曲线。对于q_0 <1的放电,观察到逆流方向的旋转增量。如果LH驱动的电流足以抑制锯齿并将q_0增大到大于1,则磁芯环形旋转变化沿并流方向。旋转增量符号的这种变化与残余应力的符号变化(其散度构成驱动流动的固有转矩)一致,这取决于其对磁剪切的依赖性。

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