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Parametric dependences of momentum pinch and Prandtl number in JET

机译:JET中动量收缩和Prandtl数的参数依赖性

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摘要

Several parametric scans have been performed to study momentum transport on JET. A neutral beam injection modulation technique has been applied to separate the diffusive and convective momentum transport terms. The magnitude of the inward momentum pinch depends strongly on the inverse density gradient length, with an experimental scaling for the pinch number being -Rv_(pinch)/xφ = 1.2R/L_n +1.4. There is no dependence of the pinch number on collisionality, whereas the pinch seems to depend weakly on q-profile, the pinch number decreasing with increasing q. The Prandtl number was not found to depend either on R/L_n, collisionality or on q. The gyro-kinetic simulations show qualitatively similar dependence of the pinch number on R/L_n, but the dependence is weaker in the simulations. Gyro-kinetic simulations do not find any clear parametric dependence in the Prandtl number, in agreement with experiments, but the experimental values are larger than the simulated ones, in particular in L-mode plasmas. The extrapolation of these results to ITER illustrates that at large enough R/L_n > 2 the pinch number becomes large enough (>3-4) to make the rotation profile peaked, provided that the edge rotation is non-zero. And this rotation peaking can be achieved with small or even with no core torque source. The absolute value of the core rotation is still very challenging to predict partly due to the lack of the present knowledge of the rotation at the plasma edge, partly due to insufficient understanding of 3D effects like braking and partly due to the uncertainties in the extrapolation of the present momentum transport results to a larger device.
机译:已经进行了几次参数扫描,以研究JET上的动量传输。已应用中性束注入调制技术来分离扩散动量和对流动量传输项。向内动量收缩的幅度在很大程度上取决于逆密度梯度长度,其中收缩数的实验比例为-Rv_(pinch)/xφ= 1.2R / L_n +1.4。收缩数量与碰撞性无关,而收缩似乎与q轮廓无关,收缩数量随q的增加而减小。找不到Prandtl数取决于R / L_n,碰撞性或q。陀螺动力学模拟在质量上显示了收缩数对R / L_n的依赖性,但是在模拟中这种依赖性较弱。与实验一致,陀螺动力学模拟在Prandtl数中没有发现任何明显的参数依赖性,但是实验值大于模拟值,尤其是在L型等离子体中。将这些结果外推至ITER可以说明,如果边缘旋转不为零,则在足够大的R / L_n> 2时,收缩数将变得足够大(> 3-4),以使旋转轮廓达到峰值。甚至在没有甚至没有核心扭矩源的情况下,也可以实现这种旋转峰值。核心旋转的绝对值的预测仍然非常具有挑战性,部分原因是缺乏对等离子边缘旋转的当前了解,部分是由于对制动等3D效果的了解不足,部分是由于外推法的不确定性当前的动量传递导致了更大的装置。

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  • 来源
    《Nuclear fusion》 |2011年第12期|p.123002.1-123002.11|共11页
  • 作者单位

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Association EURATOM-Tekes, VTT, PO Box 1000, FIN-02044 VTT, Finland;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Association EURATOM-Tekes, Aalto University, Department of Applied Physics, Finland;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Max-Planck-Iinstitut fur Plasmaphysik, EURATOM-Assoziation, Garching, Germany;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Max-Planck-Iinstitut fur Plasmaphysik, EURATOM-Assoziation, Garching, Germany;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK EURATOM/CCFE Fusion Association, Culham Science Centre, Oxon. OX14 3DB, UK;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Associacao EURATOM/IST, Instituto de Plasmas e Fusao Nuclear, 1049-001 Lisbon, Portugal;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK EURATOM/CCFE Fusion Association, Culham Science Centre, Oxon. OX14 3DB, UK;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Istituto di Fisica del Plasma CNR-EURATOM, via Cozzi 53, 20125 Milano, Italy;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Association Euratom-Ris0-DTU, Denmark;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Physics Department, University of Bayreuth, 95440 Bayreuth, Germany;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Princeton Plasma Physics Laboratory, Princeton University, Princeton, NJ 08543, USA;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK Physics Department, University of Bayreuth, 95440 Bayreuth, Germany;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK FOM Institute Rijnhuizen, Association EURATOM-FOM, Nieuwegein, The Netherlands;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK FOM Institute Rijnhuizen, Association EURATOM-FOM, Nieuwegein, The Netherlands;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK FOM Institute Rijnhuizen, Association EURATOM-FOM, Nieuwegein, The Netherlands;

    JET-EFDA, Culham Science Centre, 0X14 3DB, Abingdon, UK EURATOM/CCFE Fusion Association, Culham Science Centre, Oxon. OX14 3DB, UK;

  • 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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