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ECH experiments aiming at further advanced operations in LHD

机译:ECH实验,旨在在LHD进一步进一步的经营

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In the Large helical device (LHD), super dense core (SDC) regime [1] and high electron temperature regime with formation of the electron internal transport barrier (e-ITB) [2][3] have been studied strenuously. Electron cyclotron heating (ECH) and current drive (ECCD) in such regimes can be powerful tools for heating and control of the plasma confinement. In this paper, recent progress of ECH experiments aiming at further advanced operation in these regimes is reported. Study of fundamental ECH by electron Bernstein waves (EBWs) has been required in the SDC regime. Early experimental results of EBW-ECH by so-called O-X-B and X-B method are introduced. In a newly realized enhanced magnetic field configuration, the highest central electron temperature over 10 keV was obtained in electron cyclotron resonance (ECR) discharges. ECCD will be very important in both of high density and high temperature regimes. It has been progressed with the optimization of microwave injection and magnetic field configuration. Progress of ECCD experiment is shortly introduced.
机译:在大螺旋装置(LHD)中,浓度研究了具有电子内部传输屏障(E-ITB)[2] [3]的具有电子内部传输屏障(E-ITB)[2] [3]的超致密芯(SDC)制度[1]和高电子温度调节。电子回旋加热(EQH)和电流驱动器(ECCD)在这种状态下可以是用于加热和控制等离子体限制的强大工具。本文报道,据报道,旨在在这些制度进一步进一步进行的ECH实验的最近进展。在SDC制度下,需要研究电子伯恩斯坦波(EBWS)的基本ech。引入了通过所谓的O-X-B和X-B方法进行EBW-ech的早期实验结果。在新实现的增强磁场配置中,在电子回旋谐振(ECR)放电中获得了超过10keV的最高中心电子温度。 ECCD在高密度和高温方面都非常重要。它已经通过微波喷射和磁场配置的优化进行了进展。不久介绍了ECCD实验的进展。

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