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Simulation of the time behaviour of impurities in JET Ar-seeded discharges and its relation with sawtoothing and RF heating

机译:JET Ar注入的种子中杂质时间行为的模拟及其与锯齿和射频加热的关系

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In JET, Ar seeding has proven to be a successful means to reach quasistationary regimes that feature, simultaneously, high density, high confinement and an edge radiation belt without significant contamination of the plasma. A detailed analysis shows that in the presence of centrally deposited ion cyclotron resonance heating (ICRH) Ar transport is modified, in the sense of a reduction of the inward pinch convection. Sawtooth (ST) crashes also hamper the accumulation of Ar in the core, though their contribution is less relevant compared to the effect of the ICRH. The analysis is carried out by means of a one-dimensional impurity transport code, which has been applied to several Ar-seeded discharges. The result about the role of ST crashes is independent of triangularity. In the high triangularity discharges, with continuous D refuelling, the convection of impurities in the core region is typically very small so that ICRH injection itself has little relevance in the control of the Ar behaviour. [References: 18]
机译:在JET中,已证明Ar注入是达到准平稳状态的成功方法,该状态同时具有高密度,高限制和边缘辐射带而不会严重污染等离子体。详细分析表明,在减少向内捏合对流的意义上,在存在中心沉积的离子回旋加速器共振加热(IC​​RH)的情况下,氩气传输会发生改变。锯齿波(ST)碰撞也阻碍了堆芯中Ar的积累,尽管与ICRH的影响相比,它们的影响较小。借助一维杂质传输代码进行了分析,该代码已应用于多个Ar注入的放电。有关ST碰撞的作用的结果与三角形无关。在高三角形放电中,通过连续的D加油,堆芯区域中的杂质对流通常很小,因此ICRH注入本身与Ar行为的控制几乎没有关系。 [参考:18]

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