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Reversed rotation of limit cycle oscillation and dynamics of low-intermediate-high confinement transition

Reversed rotation of limit cycle oscillation and dynamics of low-intermediate-high confinement transition
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摘要 The dynamics of the confinement transition from L mode to H mode(LH) is investigated in detail theoretically via the extended three-wave coupling model describing the interaction of turbulence and zonal flow(ZF) for the first time.Thereinto, turbulence is divided into a positive-frequency(PF) wave and a negative-frequency(NF) one, and the gradient of pressure is added as the auxiliary energy for the system. The LH confinement transition is observed for a sufficiently high input energy. Moreover, it is found that the rotation direction of the limit cycle oscillation(LCO) of PF wave and pressure gradient is reversed during the transition. The mechanism is illustrated by exploring the wave phases. The results presented here provide a new insight into the analysis of the LH transition, which is helpful for the experiments on the fusion devices. The dynamics of the confinement transition from L mode to H mode(LH) is investigated in detail theoretically via the extended three-wave coupling model describing the interaction of turbulence and zonal flow(ZF) for the first time.Thereinto, turbulence is divided into a positive-frequency(PF) wave and a negative-frequency(NF) one, and the gradient of pressure is added as the auxiliary energy for the system. The LH confinement transition is observed for a sufficiently high input energy. Moreover, it is found that the rotation direction of the limit cycle oscillation(LCO) of PF wave and pressure gradient is reversed during the transition. The mechanism is illustrated by exploring the wave phases. The results presented here provide a new insight into the analysis of the LH transition, which is helpful for the experiments on the fusion devices.
作者 曹丹丹 弯峰 侯雅娟 桑海波 谢柏松 Dan-Dan Cao;Feng Wan;Ya-Juan Hou;Hai-Bo Sang;Bai-Song Xie(College of Nuclear Science and Technology, Beijing Normal University, Beijing 100875, China;Beijing Radiation Center, Beijing 100875, China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第6期292-297,共6页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China(Grant Nos.11305010 and 11475026) the Joint Foundation of the National Natural Science Foundation China Academy of Engineering Physics(Grant No.U1530153)
关键词 limit cycle oscillation three-wave interaction confinement transition TURBULENCE limit cycle oscillation three-wave interaction confinement transition turbulence
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