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Spontaneous toroidal rotation driven by the off-diagonal term of momentum and heat transport in the plasma with the ion internal transport barrier in LHD

机译:在LHD中具有离子内部传输势垒的等离子体的动量和热传输的非对角项驱动自发环形旋转

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A spontaneous rotation in the co-direction is observed in plasmas with an ion internal transport barrier (ITB), where the ion temperature gradient is relatively large (partial deriv T_i/partial deriv r ~ 5 keV m~(-1) and R/L_(T_i) ~ 10) in LHD. Because of the large ion temperature gradients, the magnitude of the spontaneous toroidal flow, V_φ~(spon), becomes large enough to cancel the toroidal flows driven by tangential injected neutral beams and the net toroidal rotation velocity is almost zero at the outer half of the plasma minor radius even in the plasmas with counter-dominant NB injections. The effect of velocity pinch is excluded even if it exits because of zero rotation velocity. The spontaneous toroidal flow appears in the direction of co-rotation after the formation of the ITB, not during or before the ITB formation. The causality between the change in V_φ~(spon) and partial deriv T_i/partial deriv r observed in this experiment clearly shows that the spontaneous rotation is driven by the ion temperature gradient as the off-diagonal terms of momentum and heat transport.
机译:在具有离子内部传输势垒(ITB)的等离子体中观察到了同向自发旋转,其中离子温度梯度相对较大(偏导数T_i /偏导数r〜5 keV m〜(-1)和R / LHD中的L_(T_i)〜10)。由于离子温度梯度大,自发环形流动的幅度V_φ〜(spon)变得足够大,可以抵消由切向注入的中性束驱动的环形流动,并且净环形旋转速度在C的外半部几乎为零。甚至在使用反优势NB注射的血浆中,血浆小半径也是如此。即使由于零转速而退出速度收缩的影响也被排除在外。在ITB形成之后,而不是在ITB形成期间或之前,自发的环形流动沿同向旋转方向出现。在该实验中观察到的V_φ〜(spon)变化与偏导数T_i /偏导数之间的因果关系清楚地表明,自发旋转是由离子温度梯度驱动的,它是动量和热传递的非对角项。

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