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Integrated simulations of H-mode operation in ITER including core fuelling, divertor detachment and ELM control

机译:对ITER中H模式运行的集成仿真,包括堆芯加油,转向器分离和ELM控制

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摘要

ELM mitigation to avoid melting of the tungsten (W) divertor is one of the main factors affecting plasma fuelling and detachment control at full current for high Q operation in ITER. Here we derive the ITER operational space, where ELM mitigation to avoid melting of the W divertor monoblocks top surface is not required and appropriate control of W sources and radiation in the main plasma can be ensured through ELM control by pellet pacing. We apply the experimental scaling that relates the maximum ELM energy density deposited at the divertor with the pedestal parameters and this eliminates the uncertainty related with the ELM wetted area for energy deposition at the divertor and enables the definition of the ITER operating space through global plasma parameters. Our evaluation is thus based on this empirical scaling for ELM power loads together with the scaling for the pedestal pressure limit based on predictions from stability codes. In particular, our analysis has revealed that for the pedestal pressure predicted by the EPED1 + SOLPS scaling, ELM mitigation to avoid melting of the W divertor monoblocks top surface may not be required for 2.65 T H-modes with normalized pedestal densities (to the Greenwald limit) larger than 0.5 to a level of current of 6.5-7.5 MA, which depends on assumptions on the divertor power flux during ELMs and between ELMs that expand the range of experimental uncertainties. The pellet and gas fuelling requirements compatible with control of plasma detachment, core plasma tungsten accumulation and H-mode operation (including post-ELM W transient radiation) have been assessed by 1.5D transport simulations for a range of assumptions regarding W re-deposition at the divertor including the most conservative assumption of zero prompt re-deposition. With such conservative assumptions, the post-ELM W transient radiation imposes a very stringent limit on ELM energy losses and the associated minimum required ELM frequency. Depending on W transport assumptions during the ELM, a maximum ELM frequency is also identified above which core tungsten accumulation takes place.
机译:避免钨(W)分流器熔化的ELM缓解是影响ITER中高Q运行时全电流下等离子燃料供应和脱离控制的主要因素之一。在这里,我们得出了ITER操作空间,其中不需要EL缓解来避免W偏滤器单块顶面的熔化,并且可以通过颗粒起搏来控制ELM,从而确保对W源和主要等离子体中的辐射进行适当的控制。我们应用了实验缩放比例,该缩放比例将沉积在分流器上的最大ELM能量密度与基​​座参数相关联,这消除了与ELM润湿区域在分流器上进行能量沉积相关的不确定性,并可以通过全局等离子体参数定义ITER工作空间。因此,我们的评估基于对ELM功率负载的这种经验缩放,以及基于来自稳定性代码的预测的对基座压力极限的缩放。特别是,我们的分析表明,对于由EPED1 + SOLPS缩放比例预测的基座压力,对于具有规范化基座密度的2.65 T H模式,可能不需要EL缓解来避免W偏向器单块熔化。极限值)大于0.5到6.5-7.5 MA的电流水平,这取决于对ELM期间和ELM之间的偏滤器功率通量的假设,这些假设扩大了实验不确定性的范围。对于1.5 W运移模拟,已针对1.5 W运移模拟评估了与控制等离子体分离,堆芯等离子体钨积累和H模式操作(包括ELM W瞬态后辐射)兼容的颗粒和气体燃料要求,以得到一系列有关W重沉积的假设。偏滤器包括最保守的零迅速再沉积假设。在这种保守的假设下,ELM W后的瞬态辐射对ELM能量损失和相关的最低要求ELM频率施加了非常严格的限制。根据ELM期间的W传输假设,还可以确定最大ELM频率,在该频率以上会发生芯钨积累。

著录项

  • 来源
    《Nuclear fusion》 |2018年第5期|056020.1-056020.11|共11页
  • 作者单位

    ITER Organization, Route de Vinon-sur-Verdon, 13067 St Paul Lez Durance, France;

    ITER Organization, Route de Vinon-sur-Verdon, 13067 St Paul Lez Durance, France;

    Max-Planck Institut fuer Plasmaphysik, Boltzmanstraße 2, D-85748 Garching, Germany;

    Max-Planck Institut fuer Plasmaphysik, Boltzmanstraße 2, D-85748 Garching, Germany;

    Max-Planck Institut fuer Plasmaphysik, Boltzmanstraße 2, D-85748 Garching, Germany;

    Max-Planck Institut fuer Plasmaphysik, Boltzmanstraße 2, D-85748 Garching, Germany;

    ITER Organization, Route de Vinon-sur-Verdon, 13067 St Paul Lez Durance, France;

    Keldysh Institute of Applied Mathematics, Miusskaya 4, 125047 Moscow, Russian Federation;

    Atominstitut, Technische Universitaet Wien, Stadionallee 2, 1020 Vienna, Austria;

    NRC 'Kurchatov Institute', Kurchatov sq. 1, 123182 Moscow, Russian Federation;

  • 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

    ITER; fuelling; ELM mitigation; divertor; tungsten; integrated simulations;

    机译:ITER;加油ELM缓解;偏滤器钨集成模拟;

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