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Two-parameter modified rigid rotor radia equilibrium model for field-reversed configurations

机译:用于现场反转配置的双参数改进的刚性转子Radia平衡模型

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摘要

A new equilibrium pressure profile is proposed that extends the rigid rotor (RR) model with a simple unified expression P - P(Ψ; β_s, α, σ) for both inside and outside the separatrix. A new method is described for solving the field-reversed configuration (FRC) one-dimensional (1D) equilibrium with only two parameters. The radial normalized FRC equilibrium profiles for pressure, magnetic field, and current density can be uniquely determined by the dimensionless parameters of β_s = P_s/ (B_c~2/2μ_0)) and δ_s = L_(ps)/R_s. This modified rigid rotor (MRR) model has sufficient flexibility to accommodate narrow scrape-off layer (SOL) widths and hollow current density profiles, and can be used to fit experimental measurements. A database of 1D plasma equilibria in the (β_s, δ_s) space is provided for the convenience of real-time approximate FRC equilibrium reconstruction. The detailed one-dimensional (1D) characteristics of the equilibrium models are investigated analytically and numerically. The 1D results from the MRR models are also validated using two-dimensional (2D) Grad-Shafranov (G-S) equilibrium solutions.
机译:提出了一种新的平衡压力曲线,其将刚性转子(RR)模型延伸,其在分离器内部和外部的简单统一表达式P-P(ψ;β_S,α,σ)延伸。描述了一种用于求解具有两个参数的现场反转配置(FRC)一维(1D)平衡的新方法。压力,磁场和电流密度的径向归一化FRC平衡曲线可以通过β_S= P_S /(B_C〜2 /2μ_0))的无量纲参数唯一确定,Δ_s= l_(ps)/ r_s。这种改进的刚性转子(MRR)模型具有足够的柔韧性以适应窄刮擦层(溶胶)宽度和中空电流密度型材,并且可用于适合实验测量。提供了(β_S,Δ_S)空间中的1D等离子体均衡数据库,用于方便实时近似FRC平衡重建。分析和数值研究了平衡模型的详细一维(1D)特性。 MRR模型的1D结果也使用二维(2D)Grad-Shafranov(G-S)平衡溶液进行验证。

著录项

  • 来源
    《Nuclear fusion》 |2021年第3期|036046.1-036046.10|共10页
  • 作者单位

    Key Laboratory of Materials Modification by Laser Ion and Electron Beams (Ministry of Education) School of Physics Dalian University of Technology Dalian 116024 China Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    ENN Consultant Riverside CA 92506 United States of America;

    Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    Hebei Key Laboratory of Compact Fusion Langfang 065001 China ENN Science and Technology Development Co. Ltd. Langfang 065001 China;

    Key Laboratory of Materials Modification by Laser Ion and Electron Beams (Ministry of Education) School of Physics Dalian University of Technology Dalian 116024 China;

  • 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

    Grad-Shafranov equation; MHD equilibrium; pressure profile; field-reversed configuration;

    机译:Grad-Shafranov方程式;MHD均衡;压力曲线;现场反转配置;

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