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Ideal MHD stability limits of the PROTO-SPHERA configuration

机译:PROTO-SPHERA配置的理想MHD稳定性极限

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摘要

The PROTO-SPHERA experiment (under construction in Frascati inside the START vacuum vessel) aims to study the properties of a spherical torus (ST), where a hydrogen force-free screw pinch (SP, with open field lines and fed by electrodes) replaces the central rod of the standard spherical tokamak experiments: PROTO-SPHERA, with a central screw pinch current I_e = 60 kA, aims at producing a spherical torus (with closed field lines) of diameter 2R_(sph) = 70 cm, and aspect ratio R/a — A = 1.2-1.3, carrying a toroidal current I_p = 120-240 kA. Such a configuration is an evolution of the flux core spheromak (FCS) concept, first proposed by Taylor. The formation mechanism of the configuration will be the one successfully developed by the TS-3 team at the University of Tokyo. The spherical torus toroidal current should be sustained by helicity injection from the screw pinch, therefore some level of resistive instability with toroidal mode numbers n = 1 and/or n = 2 is requested after the formation and during the sustainment phase; nevertheless, the configuration should be operated such as to maintain it stable from an ideal MHD point of view. The ideal MHD stability limits of PROTO-SPHERA have been analysed by a numerical code able to handle magnetic configurations endowed with both closed and open magnetic field lines. The results of such an analysis are presented in terms of the main parameter, which is the ratio between the currents in the spherical torus and in the central screw pinch, I_p/I_e, and of other relevant parameters of the ST (elongation, aspect ratio, total beta and the toroidal plasma current profile). A comparison with the TS-3 results is also shown.
机译:PROTO-SPHERA实验(在START真空容器内的Frascati中进行建设)旨在研究球形圆环(ST)的特性,其中使用无氢力的螺杆捏合(SP,带有开放磁场线并由电极供电)标准球形托卡马克实验的中心棒:PROTO-SPHERA,中心螺钉夹紧电流I_e = 60 kA,旨在产生直径2R_(sph)= 70 cm,长宽比为球形的圆环(带有封闭的磁场线) R / a — A = 1.2-1.3,承载环形电流I_p = 120-240 kA。这种配置是泰勒(Taylor)首次提出的磁通芯球体(FCS)概念的演变。该配置的形成机制将是东京大学TS-3小组成功开发的一种。球形环面环面电流应通过从螺钉捏合处的螺旋注入来维持,因此在成型后和维持阶段要求环面模数为n = 1和/或n = 2的一定程度的电阻不稳定性。但是,从理想的MHD角度来看,应该对配置进行操作以使其保持稳定。 PROTO-SPHERA的理想MHD稳定性极限已通过数字代码进行了分析,该数字代码能够处理具有封闭磁场线和开放磁场线的磁性配置。此类分析的结果以主要参数表示,主要参数是球形圆环和中心螺口中的电流之比I_p / I_e,以及ST的其他相关参数(伸长率,纵横比) ,总beta和环形等离子体电流曲线)。还显示了与TS-3结果的比较。

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  • 来源
    《Nuclear fusion》 |2010年第9期|P.095004.1-095004.10|共10页
  • 作者单位

    Associazione EURATOM-ENEA sulla Fusione, CR Frascati, C.P. 65-00044, Frascati, Rome, Italy;

    rnAssociazione EURATOM-ENEA sulla Fusione, CR Frascati, C.P. 65-00044, Frascati, Rome, Italy;

    rnAssociazione EURATOM-ENEA sulla Fusione, CR Frascati, C.P. 65-00044, Frascati, Rome, Italy;

    rnONERA-CERT/DTIM/M2SN 2, avenue Edouard Belin-BP 4025-31055, Toulouse Cedex 4, 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);
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  • 正文语种 eng
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