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首页> 外文期刊>Bulletin of the American Physical Society >APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Controlling the Cross-phase: A mechanism for the I-mode and other enhanced confinement regimes?.
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APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Controlling the Cross-phase: A mechanism for the I-mode and other enhanced confinement regimes?.

机译:APS-等离子体物理APS部门第59届年会-事件-控制交叉阶段:I模式和其他增强约束机制的机制?

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The I-mode and similar new transport regimes offer good confinement properties with reduced density limit issues and better control. While a number of different mechanisms have been identified for the formation and maintenance of enhanced confinement regimes few if any allow enhanced confinement in one channel but not another which is seen in the I-mode. We propose differential cross-phase modification as a possible mechanism for different transport in different channels. Simple dynamical models have been able to capture a remarkable amount of the dynamics of the core and edge transport barriers found in many devices. By including in this rich though simple dynamic transport model a simple model for cross phase effects, due to multiple instabilities, between the transported fields such as density and temperature, we can investigate whether the dynamics of more continuous transitions such as the I-mode can be captured and understood. This is backed up by multi-scale simulations on full gyro-kinetic codes. If correct this could have broad implications for transport in many systems. If this mechanism is valid, what can the model tell us about control knobs for these promising regimes?.
机译:I-模式和类似的新运输方式提供了良好的约束性能,同时减少了密度限制问题并实现了更好的控制。尽管已经确定了用于形成和维持增强限制机制的许多不同机制,但很少有人允许在一个通道中增强限制,而在I模式下则看不到其他增强机制。我们提出差分交叉相位修改作为在不同通道中进行不同传输的可能机制。简单的动力学模型已经能够捕获许多设备中大量的核心和边缘传输壁垒的动力学。通过在这个丰富但简单的动态传输模型中包含一个简单的跨相效应模型,该模型由于多种不稳定性而在诸如密度和温度之类的传输场之间发生交叉耦合,我们可以研究更连续的跃迁(例如I型)的动力学是否可以被捕获并被理解。这是通过对完整陀螺动力学代码的多尺度模拟来支持的。如果正确的话,这可能会对许多系统的运输产生广泛的影响。如果这种机制有效,那么该模型可以告诉我们有关这些有希望的方案的控制旋钮的信息?

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