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MHD activity and formation of the electron internal transport barrier in the T-10 tokamak

机译:T-10托卡马克的MHD活性和电子内部传输壁垒的形成

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The plasma stability and confinement have been investigated through control of the safety factor profile q(r) by the electron cyclotron current drive in the T-10 tokamak. The regimes with dq/dr congruent to 0 and dq/dr < 0 in the plasma core were obtained. Various types of MHD activity were observed: ordinary sawtooth, saturated sawtooth, humpbacks, trills etc. It was shown that when the minimal value q(min) increases from q(min) < 1 to q(min) = 2 the plasma becomes strongly unstable due to the corresponding MHD activity or passes to the steady-state improved confinement mode. The latter is realized when the electron internal transport barrier (EITB) is formed. The condition for the appearance of the EITB is dq/dr congruent to 0, where q = m lies near a rational value for low m and n. [References: 18]
机译:通过在T-10托卡马克中通过电子回旋加速器电流驱动控制安全系数分布q(r),研究了等离子体的稳定性和局限性。获得了在等离子体核心中dq / dr等于0且dq / dr <0的状态。观察到各种类型的MHD活性:普通的锯齿,饱和的锯齿,座头鲸,颤音等。结果表明,当最小值q(min)从q(min)<1增大到q(min)= 2时,血浆变得很强由于相应的MHD活动而不稳定或进入稳态改进的限制模式。后者是在形成电子内部传输势垒(EITB)时实现的。 EITB出现的条件是dq / dr等于0,其中q = m / n接近于低m和n的有理值。 [参考:18]

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