首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Control of rotating helical magnetic field penetration into tokamak plasmas using electrode biasing in HYBTOK-II
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Control of rotating helical magnetic field penetration into tokamak plasmas using electrode biasing in HYBTOK-II

机译:使用HYBTOK-II中的电极偏压控制旋转螺旋磁场穿透到托卡马克等离子体中

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Detailed measurements of rotating helical field (RHF) have been carried out in a small tokamak device HYBTOK-II in order to know the interaction between the tokamak plasma and RHF. The magnetic pick-up coils were inserted deeply inside the plasma to detect the response profile of tokamak plasma to the RHF. It was found that a large relative velocity between the plasma and RHF poloidal rotation velocities gives rise to a strong attenuation of RHF in the plasma because the large screening current flows around the resonance surface against the externally applied RHF. The electrode biasing was applied so as to increase the relative velocity so that the RHF was strongly attenuated in comparison with unbiased case. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 9]
机译:为了了解托卡马克等离子体与RHF之间的相互作用,已在小型托卡马克装置HYBTOK-II中进行了旋转螺旋场(RHF)的详细测量。将电磁传感器线圈深深地插入等离子体内部,以检测托卡马克等离子体对RHF的响应曲线。已经发现,由于大的屏蔽电流围绕共振表面流向外部施加的RHF,因此等离子体与RHF极向旋转速度之间的较大相对速度会导致等离子体中RHF的强烈衰减。施加电极偏压以增加相对速度,使得与无偏压情况相比,RHF被强烈衰减。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:9]

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