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Modification of H-mode pedestal structure with lower hybrid waves on Alcator C-Mod

机译:在Alcator C-Mod上以较低的混合波修改H型基座结构

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摘要

The application of lower hybrid range of frequencies (LHRF) waves in H-mode plasmas on Alcator C-Mod can result in a significant reduction in core particle inventory, with no significant degradation of energy confinement. This phenomenon has been observed in steady enhanced D_α (EDA) H-mode targets, which are sustained by ion cyclotron RF auxiliary heating, in which pedestal density n_(ped) is usually tied firmly to plasma current I_P and shows a strong resilience to changes in the edge neutral source. Upon application of up to 1 MW LHRF power, n_(ped) is reduced by up to 30%, while the temperature profile increases simultaneously such that the pressure pedestal remains constant or is slightly increased. Steady EDA H-mode operation with no edge-localized modes can be maintained while edge collisionality is reduced by factors of reduction of 2-4. Elevation of scrape-off layer (SOL) density and electric currents accompany the application of LHRF (at levels as low as 400 kW) with a fast time response (~ 10~(-2) s), while full density pedestal relaxation and core density reduction occur on longer time scales (~ 10~(-1) s). A similarly prompt counter-I_P change in the edge toroidal velocity is also observed in response to LHRF, followed on longer time scales by a counter-I_P change in the central rotation. The range of time scales of the plasma response may indicate that the radial locations of LHRF interactions (i.e. SOL versus core), and power deposition mechanisms, are evolving in time. Understanding the responsible physical mechanisms and applying them to a broad range of discharges could provide a tool for improved H-mode density control.
机译:在Alcator C-Mod的H模式等离子体中使用较低的杂波频率(LHRF)波,可以显着减少核心粒子的存量,而不会显着降低能量限制。在离子回旋加速器射频辅助加热所维持的稳定增强的D_α(EDA)H模式目标中已观察到此现象,其中,基座密度n_(ped)通常牢固地与等离子体电流I_P绑定,并显示出对变化的强烈抵御力在边缘中性源。在施加高达1 MW的LHRF功率后,n_(ped)最多降低30%,而温度曲线同时增加,从而压力基座保持恒定或略有增加。可以保持没有边缘定位模式的稳定EDA H模式操作,同时通过减少2-4的因子来减少边缘碰撞性。 LHRF(低至400 kW的水平)的应用伴随着快速的响应时间(〜10〜(-2)s),同时具有全密度的基座松弛和核心,从而提高了刮除层(SOL)的密度和电流密度降低发生在较长的时间尺度上(〜10〜(-1)s)。响应于LHRF,在边缘环形速度中也观察到了类似的迅速I_P变化,随后在较长的时间尺度上,中心旋转出现了I_P变化。等离子体响应的时标范围可以指示LHRF相互作用的径向位置(即SOL与核之间)以及功率沉积机制在随时间变化。了解负责任的物理机制并将其应用于各种放电可以为改善H模式密度控制提供一种工具。

著录项

  • 来源
    《Nuclear fusion》 |2010年第6期|P.3.1-3.7|共7页
  • 作者单位

    Massachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA Department of Physics and Astronomy, University of California, 475 Portola Plaza, Los Angeles, CA 90095-1547, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA Max-Planck Institut fuer Plasmaphysik, EURATOM Association, D-85748, Garching, Germany;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnMassachusetts Institute of Technology, Plasma Science and Fusion Center, 175 Albany Street, Cambridge, MA 02139-4307, USA;

    rnPrinceton Plasma Physics Laboratory, Princeton University, PO Box 451, Princeton, NJ 08543-0451, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    tokamaks, spherical tokamaks; plasma heating by microwaves; ECR, LH, collisional heating;

    机译:托卡马克;球形托卡马克;微波等离子体加热;ECR;LH;碰撞加热;

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