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Ohmic energy confinement saturation and core toroidal rotation reversal in Alcator C-Mod plasmas

机译:Alcator C-Mod等离子体中的欧姆能量限制饱和和核心环形旋转反转

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摘要

Ohmic energy confinement saturation is found to be closely related to core toroidal rotation reversals in Alcator C-Mod tokamak plasmas. Rotation reversals occur at a critical density, depending on the plasma current and toroidal magnetic field, which coincides with the density separating the linear Ohmic confinement regime from the saturated Ohmic confinement regime. The rotation is directed co-current at low density and abruptly changes direction to counter-current when the energy confinement saturates as the density is increased. Since there is a bifurcation in the direction of the rotation at this critical density, toroidal rotation reversal is a very sensitive indicator in the determination of the regime change. The reversal and confinement saturation results can be unified, since these processes occur in a particular range of the collisionality.
机译:在Alcator C-Mod托卡马克等离子体中,发现欧姆能量约束饱和度与核心环形旋转反转密切相关。旋转反转以临界密度发生,具体取决于等离子体电流和环形磁场,该密度与将线性欧姆约束方案与饱和欧姆约束​​方案分开的密度相吻合。旋转以低密度定向并流,并且当能量限制随着密度增加而饱和时突然改变方向为逆流。由于在此临界密度下在旋转方向上存在分叉,因此在确定状态变化时,环形旋转反转是非常敏感的指标。反转和限制饱和结果可以统一,因为这些过程发生在特定的碰撞范围内。

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