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The formation and evolution of extreme shear reversal in JET and its influence on local thermal transport

机译:JET中极端剪切逆转的形成,演化及其对局部热传输的影响

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In JET discharges where lower hybrid heating and current drive (LHCD) is applied early during the current ramp, a region of the plasma with zero current density is formed near the axis. At the boundary of this region the current density is large and B-theta increases rapidly over a small distance. In the central region the safety factor, q, is effectively infinite, but this falls steeply in the boundary region. Outside the boundary region q reaches a minimum, where the magnetic shears equivalent to r/q (dq/dr) becomes zero. The formation of this region of zero current is dependent on both the heating and the current drive effects of the LHCD. When LHCD is switched off the current profile begins to relax towards the resistive peaked current distribution of fully inductive tokamak operation. If LHCD is not used in the current rise then these current profiles are not established. Although the physical mechanism exists to drive the central plasma current below zero, in most cases it appears to be prevented from going negative. At least one MHD mechanism has been identified which could be responsible for this. The presence of the zero central current is closely linked to the periodic relaxation events seen in these discharges. In these discharges, internal transport barriers have been observed with additional heating powers substantially below the values required to obtain barriers in monotonic q profile cases. [References: 31]
机译:在JET放电中,在电流斜坡期间较早地施加了较低的混合加热和电流驱动(LHCD),在轴附近形成了具有零电流密度的等离子体区域。在该区域的边界处,电流密度很大,并且B-theta在短距离内迅速增加。在中心区域中,安全系数q实际上是无限的,但是在边界区域中陡然下降。边界区域q的外部达到最小值,等效于r / q(dq / dr)的磁剪变为零。零电流区域的形成取决于LHCD的加热和电流驱动效果。当LHCD关断时,电流曲线开始趋向于完全感应托卡马克工作的电阻峰值电流分布。如果在电流上升中未使用LHCD,则不会建立这些电流曲线。尽管存在将中心等离子体电流驱动到零以下的物理机制,但在大多数情况下,似乎可以防止其变为负值。已经确定至少一个MHD机制可能对此负责。零中心电流的存在与这些放电中看到的周期性弛豫事件密切相关。在这些放电中,观察到内部运输势垒,其附加的加热功率大大低于在单调q轮廓情况下获得势垒所需的值。 [参考:31]

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