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Evidence for anomalous effects on the current evolution in the tokamak hybrid operating scenarios

机译:托卡马克混合运行方案中对当前演变的异常影响的证据

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Alternatives to the usual picture of advanced tokamak (AT) discharges are those that form when anomalous thermal conductivity and/or resistivity alter plasma current and pressure profiles to achieve stationary characteristics through self-organizing mechanisms where a measure of desired AT features is maintained without external current-profile control. Regimes exhibiting these characteristics are those where the safety factor (q) evolves to a stationary profile with the on-axis and minimum q ~ 1. Operating scenarios with fusion performance exceeding H-mode at the same plasma current and where the inductively driven current density achieves a stationary configuration with either small or nonexisting sawteeth should enhance the performance of ITER and future burning plasma experiments. We present simulation results of anomalous current-profile formation and evolution using theory-based hyper-resistive models. These simulations are stimulated by experimental observations with which we compare and contrast the simulated evolution. We find that the hyper-resistivity is sufficiently strong to modify the current-profile evolution to achieve conditions consistent with experimental observations. Modelling these anomalous effects is important for developing a capability to scale current experiments to future burning plasmas.
机译:先进的托卡马克(AT)放电的通常情况的替代方案是当异常热导率和/或电阻率改变等离子流和压力曲线以通过自组织机制获得稳定特性而形成的那些自组织机制,其中所需AT特性的测量无需外部干预当前配置文件控制。表现出这些特征的区域是那些在轴向上安全系数(q)趋于平稳且最小q〜1的区域。在相同的等离子电流下,融合性能超过H模式的工作场景,以及感应驱动电流密度用小的或不存在的锯齿实现固定构型应增强ITER的性能以及未来燃烧等离子体的实验。我们使用基于理论的高阻模型介绍异常电流剖面形成和演化的模拟结果。这些模拟是通过实验观察来激发的,我们将它们与模拟演化进行比较和对比。我们发现,超电阻率足够强,可以修改电流剖面的演化,以实现与实验观察结果一致的条件。对这些异常效应进行建模对于开发将当前实验扩展到将来燃烧的等离子体的能力非常重要。

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