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Tokamak plasmas with dominant electron cyclotron heating; evidence for electron thermal transport barriers

机译:托卡马克等离子体具有主要的电子回旋加速器加热;电子传热壁垒的证据

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In the Rijnhuizen Tokamak Project [RTP, A. J. H. Donne, the RTP Team, Plasma Phys. Rep. 20, 192 (1994)], experiments have been carried out with Electron Cyclotron Heating (ECH) at four to seven times the Ohmic power, with a deposition width < 10% of the minor radius. Central deposition leads to sharp electron temperature (T-e) gradients near the q=1 surface. Off-axis deposition results in steady-state hollow T-e profiles. A radial scan of the ECH deposition reveals a discrete, stepwise response of T-e profile. The transitions occur for a displacement of the deposition by less than 1 mm. Each transition is due to the loss of a transport barrier. The transitions occur when the minimum value of q passes through the values 1, 4/3, 5/2, 2, 7/2 and 3. A numerical model featuring transport barriers near those q values gives good reproduction of the experimental data. The possible role of the topological properties of the magnetic field is discussed. (C) 1999 American Institute of Physics. [S1070-664X(99)00812-5]. [References: 48]
机译:在Rijnhuizen Tokamak项目[RTP,A。J. H. Donne,RTP小组,Plasma Phys。 Rep。20,192(1994)],已经用电子回旋加速器加热(ECH)以4至7倍的欧姆功率进行了实验,沉积宽度小于短半径的10%。中央沉积导致在q = 1表面附近出现急剧的电子温度(T-e)梯度。离轴沉积导致稳态空心T-e轮廓。 ECH沉积物的径向扫描揭示了T-e轮廓的离散逐步响应。发生过渡时沉积物的位移小于1 mm。每个过渡都是由于运输障碍的丧失。当q的最小值穿过值1、4 / 3、5 / 2、2、7 / 2和3时,将发生过渡。具有在这些q值附近的传输势垒的数值模型可以很好地再现实验数据。讨论了磁场拓扑特性的可能作用。 (C)1999美国物理研究所。 [S1070-664X(99)00812-5]。 [参考:48]

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