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Effects of resonant magnetic perturbations on radial electric fields in DIII-D tokamak
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作者 Jingyuan FU Pengfei LIU +3 位作者 xishuo wei Zhihong LIN Nathaniel Mandrachia FERRARO Raffi NAZIKIAN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第10期137-149,共13页
Gyrokinetic simulations of DIII-D tokamak equilibrium find that resonant magnetic perturbation(RMP)drives a neoclassical non-ambipolar electron particle flux,which causes a rapid change of equilibrium radial electric ... Gyrokinetic simulations of DIII-D tokamak equilibrium find that resonant magnetic perturbation(RMP)drives a neoclassical non-ambipolar electron particle flux,which causes a rapid change of equilibrium radial electric fields consistent with experimental observations during the suppression of the edge localized mode(ELM).The simulation results provide a support for the conjecture that RMP-induced changes of radial electric fields lead to the enhanced turbulent transport at the pedestal top during the ELM suppression(Taimourzadeh et al 2019 Nucl.Fusion59046005).Furthermore,gyrokinetic simulations of collisionless damping of zonal flows show that resonant responses to the RMP decrease the residual level of the zonal flows and damp the geodesic acoustic mode. 展开更多
关键词 resonant magnetic perturbation neoclassical transport zonal flow electric field
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