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Stabilization in the ZaP Flow Z-Pinch

机译:ZaP Flow Z-Pinch的稳定性

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The stabilizing effect of a sheared axial flow is investigated in an axially flowing Z-pinch that is 1 m long with a 1 cm radius. After pinch assembly the plasma is magnetically confined for an extended quiescent period where the magnetic fluctuation levels of the azimuthal modes m = 1, 2, 3 are significantly reduced. Time-resolved Doppler shifts of plasma impurity lines are measured to determine the plasma axial velocity profiles showing a large, but sub-Alfvenic, sheared flow during the quiescent period and low shear profiles during periods of high mode activity. The plasma has a sheared axial flow that exceeds the theoretical threshold for stability during the quiescent period and is lower than the threshold during periods of high mode activity. The sheared flow profile is coincident with a plasma quiescent period where magnetic mode fluctuations are low. The threshold value and plasma lifetime are experimentally adjusted by controlling the plasma density and plasma supply, which is varied by altering the amount of injected neutral gas. Nonlinear simulations of the Z-pinch are performed using Mach2 for a static plasma, a uniform shear, and a shear localized at the pinch radius.
机译:在1 m长,半径为1 cm的轴向流动Z型夹中研究了轴向剪切流的稳定作用。在捏合组装之后,将等离子体磁约束一个较长的静态周期,在该静态周期中,方位模m = 1、2、3的磁波动水平会大大降低。测量血浆杂质线的时间分辨多普勒频移,以确定血浆轴向速度曲线,该曲线在静态期间显示出较大的但亚次方剪切流,在高模态活动期间显示出低剪切曲线。等离子体的剪切轴向流在静态期间超过理论上的稳定性阈值,并在高模态活动期间低于阈值。剪切流动剖面与磁模式波动低的等离子体静止期一致。通过控制等离子体密度和等离子体供应量,可以通过实验调整阈值和等离子体寿命,这可以通过改变注入的中性气体的量来改变。使用Mach2对静态等离子,均匀剪切和局部收缩半径处的剪切使用Zachch进行非线性模拟。

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