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H-mode transitions and limit cycle oscillations from mean field transport equations

机译:平均传输方程的H模式转换和极限循环振荡

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The mean field toroidal and parallel momentum transport equations will be shown to admit both one-step transitions to suppressed transport (L/H) and limit cycle oscillations (LCO). Both types of transitions are driven by the suppression of turbulence by the mean field ExB velocity shear. Using experimental data to evaluate the coefficients of a reduced transport model, the observed frequency of the LCO can be matched. The increase in the H-mode power threshold above and below a minimum density agrees with the trends in the model. Both leading and lagging phase relations between the turbulent density fluctuation amplitude and the ExB velocity shear can occur depending on the evolution of the linear growth rate of the turbulence. The transport solutions match the initial phase of the L/H transition where the poloidal and ExB velocities are observed to change, and the density fluctuations drop, faster than the diamagnetic velocity.
机译:将显示平均场环状和并联动量传输方程,以承认抑制传输(L / H)和极限循环振荡(LCO)的一步转变。通过平均场EXB速度剪切,通过抑制湍流来驱动两种转变。使用实验数据来评估减少运输模型的系数,可以匹配观察到的LCO频率。高于和低于最小密度的H模式功率阈值的增加与模型的趋势同意。由于湍流线性生长速率的演变,可以发生湍流密度波动幅度与exb速度剪切之间的前导和滞后相位关系。传输解决方案匹配L / H转变的初始阶段,其中观察到液体和exb速度改变,并且密度波动下降,比抗磁速度更快。

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