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Turbulence regulation with radial wavenumber spectral shift caused by externally driven E × B velocity shear during edge-localized mode mitigation

机译:边缘局限模态缓解过程中由外部驱动的E×B速度剪切引起的径向波数谱移引起的湍流调节

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Mitigation of edge-localized modes by lower hybrid current drive (LHCD) has been observed in H-mode plasmas of the HL-2A tokamak. It has been found that this mitigation is strongly desynchronized with the LHCD pulse but synchronized with the pedestal turbulence enhancement. This turbulence is enhanced by LHCD induced pedestal E x B velocity shear resulting from the ion diamagnetic term del(del P-i). This velocity shear modifies the turbulence radial wavenumber (k(r)) spectrum by varying the averaged radial wavenumber ((k(r)) over bar) from large negative value to zero, reducing the turbulence dissipation (similar to k(r)(2)). A modified turbulence spectral shift model has been used to simulate the experimental results. A critical growth rate gamma(0) for the turbulence regulation is identified in this model and experimentally determined. The criterion for triggering the spectral shift and turbulence enhancement is established. It has been found that there exists a threshold U-c of the LHCD induced E x B velocity shear rate,which determines the desynchronization time delay. This threshold value is directly related to gamma(0), for the pedestal turbulence enhancement. Good agreement has been found between experiment and theory for the regulation of the turbulence intensity calculated with a selected poloidal wavenumber by its averaged radial wavenumber.
机译:在HL-2A托卡马克的H模式等离子体中,已观察到通过较低的混合电流驱动(LHCD)减轻了边缘定位模式。已经发现,该减轻与LHCD脉冲强烈地不同步,但是与基座湍流增强同步。由离子反磁项del(del P-i)产生的LHCD引起的基座E x B速度剪切增强了这种湍流。该速度剪切通过将平均径向波数(bar上的(k(r))从大的负值变为零)来修改湍流径向波数(k(r))频谱,从而减少了湍流耗散(类似于k(r)( 2))。改进的湍流光谱偏移模型已用于模拟实验结果。在该模型中确定并实验确定了湍流调节的临界增长率gamma(0)。建立了触发光谱偏移和湍流增强的标准。已经发现,存在由LHCD引起的E x B速度剪切速率的阈值U-c,该阈值决定了去同步时间延迟。对于基座湍流增强,该阈值与gamma(0)直接相关。在实验和理论之间已经找到了很好的协议,可以调节湍流强度,该湍流强度是根据选定的极向波数通过其平均径向波数来计算的。

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