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Temperature gradient driven electron transport in NSTX and Tore Supra

机译:温度梯度驱动电子在NSTX和Tore Supra中的传输

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摘要

Electron thermal fluxes are derived from the power balance for Tore Supra (TS) and NSTX discharges with centrally deposited fast wave electron heating. Measurements of the electron temperature and density profiles, combined with ray tracing computations of the power absorption profiles, allow detailed interpretation of the thermal flux versus temperature gradient. Evidence supporting the occurrence of electron temperature gradient turbulent transport in the two confinement devices is found. With control of the magnetic rotational transform profile and the heating power, internal transport barriers are created in TS and NSTX discharges. These partial transport barriers are argued to be a universal feature of transport equations in the presence of invariant tori that are intrinsic to non-monotonic rotational transforms in dynamical systems.
机译:电子热通量来自Tore Supra(TS)和NSTX放电的功率平衡,并在中心沉积了快速波电子加热。电子温度和密度分布图的测量,结合功率吸收分布图的射线追踪计算,可以详细解释热通量与温度梯度的关系。找到了支持在两个限制装置中发生电子温度梯度湍流传输的证据。通过控制磁旋转变换曲线和加热功率,可以在TS和NSTX放电中形成内部传输壁垒。这些不完整的传递障碍被认为是存在动力学系统中非单调旋转变换固有的不变托里的运输方程的普遍特征。

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