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Characterization of ion heat conduction in JET and ASDEX Upgrade plasmas with and without internal transport barriers

机译:带有和不带有内部传输壁垒的JET和ASDEX Upgrade等离子体中离子导热的表征

摘要

In ASDEX Upgrade and JET, the ion temperature profiles can be described by R/L-Ti which exhibits only little variations, both locally, when comparing different discharges, andradially over a wide range of the poloidal cross-section. Considering a change of the local ion heat flux of more than a factor of two, this behaviour indicates some degree of profile stiffness. In JET, covering a large ion temperature range from 1 to 25 keV, the normalized ion temperature gradient, R/L-Ti, shows a dependence on the electron to ion temperature ratio or toroidal rotational shear. In particular, in hot ion plasmas, produced predominantly by neutral beam heating at low densities, in which large T-i/T-e is coupled to strong toroidal rotation, the effect of the two quantities cannot be distinguished. Both in ASDEX Upgrade and JET, plasmas with internal transport barriers (ITBs), including the PEP mode in JET, are characterized by a significant increase of R/L-Ti above the value of L- and H-mode plasmas. In agreement with previous ASDEX Upgrade results, no increase of the ion heat transport in reversed magnetic shear ITB plasmas is found in JET when raising the electron heating. Evidence is presented that magnetic shear directly influences R/L-Ti, namely decreasing the ion heat transport when going from weakly positive to negative magnetic shear.
机译:在ASDEX升级版和JET中,离子温度曲线可以用R / L-Ti来描述,当比较不同的放电时,离子温度曲线在局部和径向范围的变化都很小。考虑到局部离子热通量的变化超过两倍,这种现象表明一定程度的轮廓刚度。在JET中,离子温度梯度范围为1至25 keV,归一化离子温度梯度R / L-Ti显示出对电子与离子温度比或环形旋转剪切的依赖性。特别地,在主要由低密度的中性束加热产生的热离子等离子体中,大的T-i / T-e与强的环形旋转耦合,无法区分这两个量的影响。在ASDEX升级版和JET中,具有内部传输壁垒(ITB)的等离子体(包括JET中的PEP模式)的特征是R / L-Ti明显高于L和H模式等离子体的值。与以前的ASDEX升级结果一致,当提高电子加热时,在JET中未发现反向磁剪切ITB等离子体中离子传热的增加。有证据表明,磁剪切直接影响R / L-Ti,即当从弱正磁剪切变为负磁剪切时,会降低离子传热。

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