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Poloidal rotation driven by electron cyclotron resonance wave in tokamak plasmas

机译:由电子回旋谐振波驱动的面色旋转在托卡马克等离子体中

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The poloidal electric filed, which is the drive field of poloidal rotation, has been observed and increases obviously after the injection of electron cyclotron resonance wave in HL-2A experiment, and the amplitude of the poloidal electric field is in the order of 103 V/m. Through theoretical analysis using Stringer rotation model, the observed poloidal electric field is of the same order as the theoretical calculation value. In addition, the magnetic pump damping which would damp the poloidal rotation is calculated numerically and the calculation results show that the closer to the core plasmas, the stronger the magnetic pump damping will be. Meanwhile, according to the value of the calculated magnetic pump damping, the threshold of the poloidal electric field which could overcome magnetic pump damping and drive poloidal rotation in tokamak plasmas is given out. Finally, the poloidal rotation velocity over time at different minor radius is studied theoretically.
机译:是在HL-2a实验中注射电子回旋谐振波之后,观察到具有旋转旋转的驱动场的单极电力归档,并且显然在HL-2A实验中的振幅之后增加,并且占照电场的幅度为10 3 v / m。通过使用Stringer旋转模型的理论分析,观察到的个子电场与理论计算值相同。另外,在数值上计算聚片旋转的磁泵阻尼,并且计算结果表明靠近芯等离子体,磁泵阻尼的越强。同时,根据计算出的磁泵阻尼的值,给出了可以克服磁泵阻尼和托克拉姆等离子体中的磁泵阻尼和驱动弓形旋转的单极电场的阈值。最后,从理论上,研究了不同轻微半径时的单个旋转速度。

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