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Time-dependent simulation of lower hybrid current drive in JET discharges

机译:JET放电中较低混合电流驱动的时变仿真

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摘要

In this paper we report on simulations of lower hybrid current drive (LHCD) in JET closely comparing the simulation results to the available experimental data. The simulations are performed all over the relevant discharge duration by ASTRA. The LHCD module, FRTC, is based on a standard ray-tracing Fokker-Planck model. The purpose of the paper is to understand the present LHCD experiments issues within the limit of the LH linear propagation model. These issues are: (ⅰ) analysis of non-resonant collisional absorption (NRCA) of LH wave power in the main JET plasma during the current ramp-up phase and in steady-state (SS) scenarios, (ⅱ) the lack of penetration of LHCD in high-density plasmas, (ⅲ) current diffusion during the LHCD-assisted current ramp-up and (ⅳ) assessment of the current profile alignment in JET SS discharges in the presence of LHCD. In recent experiments from FTU, JET and C_M0D, LHCD effects at high plasma density are either completely absent or less than expected. It has been shown, both in FTU and ALCAT0R-C_MOD, that NRCA of LH wave power can be responsible for that. Indeed NRCA is estimated to be small in JET plasmas, at least in the main heating phase and therefore it is not expected to be responsible for the lack of penetration of LHW in high-density JET plasmas, however here we show for the first time that it can be effective during the early phase of the current ramp-up, when the plasma is still collisional. On the contrary it is suggested that the reduction of LHCD effects at high density may be attributed at least partially to the loss of accessibility of the n_‖ spectrum effectively launched into the plasma. Furthermore it is shown that the linear propagation model provide very broad and stable LH current density profiles, with no need to include any non-linear spectral broadening. The current diffusion during the LHCD-assisted current ramp-up is investigated and a careful comparison between the simulated q-profiles and the measured ones is performed over time. The implications of the observed difference are discussed. Finally the important question of the alignment of all the current profile components is analysed in JET SS discharges at high β_N.
机译:在本文中,我们将JET中的较低混合电流驱动器(LHCD)的仿真结果与可用的实验数据进行了比较,并进行了比较。在ASTRA的所有相关放电持续时间内进行模拟。 LHCD模块FRTC基于标准的光线追踪Fokker-Planck模型。本文的目的是在LH线性传播模型的限制内了解当前的LHCD实验问题。这些问题是:(ⅰ)在当前加速阶段和稳态(SS)情况下分析主要JET等离子体中LH波功率的非共振碰撞吸收(NRCA),(ⅱ)缺乏穿透力高密度等离子体中的LHCD的分布,(l)LHCD辅助电流斜升期间的电流扩散和(l)评估在存在LHCD的情况下JET SS放电中的电流分布对准。在来自FTU,JET和C_M0D的最新实验中,高血浆密度下的LHCD效应完全不存在或低于预期。在FTU和ALCAT0R-C_MOD中都显示出LH波功率的NRCA可能是造成这种情况的原因。实际上,据估计,在JET等离子体中,至少在主加热阶段,NRCA很小,因此,预计它不是造成LHW在高密度JET等离子体中缺乏渗透的原因,但是,我们在此首次证明当等离子仍然碰撞时,它可以在电流加速的早期阶段有效。相反,有人提出,高密度LHCD效应的降低至少可以部分归因于有效发射到等离子体中的n_'光谱的可及性的丧失。此外,还表明,线性传播模型可提供非常宽泛且稳定的LH电流密度曲线,而无需包括任何非线性频谱展宽。研究了LHCD辅助电流斜升期间的电流扩散,并随时间进行了仿真q轮廓和测量轮廓之间的仔细比较。讨论了观察到的差异的含义。最后,在高β_N的JET SS放电中分析了所有电流轮廓分量的对准的重要问题。

著录项

  • 来源
    《Nuclear fusion》 |2014年第12期|123009.1-123009.20|共20页
  • 作者单位

    ENEA, CP 65-00044-Frascati, Rome, Italy;

    Ioffe Institute, St Petersburg, Russian Federation;

    CCFE, Culham Science Centre, Abingdon OX14 DB, UK;

    CCFE, Culham Science Centre, Abingdon OX14 DB, UK;

    CEA, IRFM, F-13108 Saint Paul-lez-Durance, France;

  • 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

    lower hybrid current drive; JET; q-profile; bootstrap current;

    机译:较低的混合电流驱动器;喷射;q-profile;自举电流;
  • 入库时间 2022-08-18 00:42:59

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