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作 者:李芙屹 向东[1] 龚学余[1] 路兴强[1] LI Fuyi XIANG Dong GONG Xueyu LU Xingqiang(School of Nuclear Science and Technolodge, University of South China, Hengyang 421001, China)
机构地区:[1]南华大学核科学技术学院,湖南衡阳421001
出 处:《计算物理》2016年第4期441-446,共6页Chinese Journal of Computational Physics
基 金:国家自然科学基金(11375085);国际热核聚变实验堆(ITER)计划专项(2014GB108002);湖南省自然科学基金(2015JJ2121);湖南省核聚变与等离子体物理创新团队建设项目(NHXTD03)资助
摘 要:采用粒子模拟方法,考察多支沿背景磁场方向传播的低频Alfvén波对磁化等离子体的加热过程,研究不同频率的多支低频Alfvén波相干加热.结果表明可以通过调整波的频率比实现对非共振加热过程和随机加热过程这两个阶段的强化.符合相干共振条件的多波加热会强化低频Alfvén波对粒子拾取,进而强化非共振加热,明显提高加热效率.在多波加热的过程中,如果多支波之间的频率差足够小,则多波在调制过程中会形成波包.波包的出现标志着粒子各向异性的强化,从而提升随机加热效率.Heating of magnetized plasma through one towards mutiple shear Alfven waves with low frequency propagating along background magnetic field is studied with test particle simulation. It shows that mutiple waves whose frequencies match resonance condition lead to significantly efficiency heating by strengthen non-resononce process. With evolution of heating, mutiple waves turn to modulation wave. As frequencis of mutiple waves are close wave packets are created in transverse direction. A great ion temperature anisotrophy is produced and after that randomization process is stengthened either. Efficiency of stochastic heating process is also enhanced. It can be used in controling non-resonance and stochastic heating process by changing frequencise of mutiple low frequency waves.
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