Calculation of neoclassical toroidal viscosity with a particle simulation in the tokamak magnetic braking experiments

被引:20
|
作者
Kim, K. [1 ]
Park, J. -K. [1 ]
Boozer, A. H. [2 ]
Menard, J. E. [1 ]
Gerhardt, S. P. [1 ]
Logan, N. C. [1 ]
Wang, Z. R. [1 ]
Kramer, G. J. [1 ]
Burrell, K. H. [3 ]
Garofalo, A. M. [3 ]
机构
[1] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA
[2] Columbia Univ, Dept Appl Phys & Appl Math, New York, NY 10027 USA
[3] Gen Atom Co, San Diego, CA 92186 USA
关键词
tokamak; NTV; magnetic breaking; 3D field; drift-kinetic particle simulation; BANANA-DRIFT TRANSPORT; MOMENTUM DISSIPATION; PLASMAS; RIPPLE;
D O I
10.1088/0029-5515/54/7/073014
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Accurate calculation of perturbed distribution function delta f and perturbed magnetic field delta B is essential to achieve prediction of non-ambipolar transport and neoclassical toroidal viscosity (NTV) in perturbed tokamaks. This paper reports a study of the NTV with a delta f particle code (POCA) and improved understanding of magnetic braking in tokamak experiments. POCA calculates the NTV by computing delta f with guiding-centre orbit motion and using delta B from the ideal perturbed equilibrium code (IPEC). Theories of NTV for magnetic field resonance, collisionality dependency, and toroidal mode coupling are tested in the simple configurations using the particle simulations. The POCA simulations are also compared with experimental estimations for NTV, which are measured from angular momentum balance (DIII-D) and toroidal rotational damping rate (NSTX). The calculation shows reasonable agreement in total NTV torque for the DIII-D discharge with weak rotational resonances in the nu(-) root nu. regime. In NSTX discharges where the bounce-harmonic resonances dominantly appear, the POCA simulation gives total NTV torques comparable to the measurements, however large discrepancies are found in the detailed damping and NTV profiles. It is discussed that a self-consistent calculation of delta B using general perturbed equilibria is eventually necessary since a non-ideal plasma response can change the perturbed field and thereby the NTV torque.
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页数:11
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