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Gyrokinetic simulations of an electron temperature gradient turbulence driven current in tokamak plasmas

机译:托卡马克等离子体中电子温度梯度湍流驱动电流的运动学仿真

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摘要

We report the results of a gyrokinetic simulation study elucidating the characteristics of the current driven by electron temperature gradient (ETG) turbulence in toroidal geometry. We examined the amount of the ETG turbulence-driven current for different turbulence levels, which were obtained by varying the relative electron gyroradius rho* = rho(e)/a. Simulations show that the amount of the ETG turbulence-driven current increases with rho* due to the gyro-Bohm scaling of turbulence intensity. A perturbation of the equilibrium q-profile by the ETG turbulence-driven current becomes noticeable when rho* > 1/4000. Even in a small rho* case, the proportional relation between the ETG turbulence-driven current and turbulence intensity suggests that a considerable intrinsic current can be driven inside an edge pedestal where a steep gradient of the electron temperature profile can excite ETG turbulence in a narrow region. Published by AIP Publishing.
机译:我们报告了陀螺动力学仿真研究的结果,阐明了由环形几何形状中的电子温度梯度(ETG)湍流驱动的电流的特性。我们研究了通过改变相对电子陀螺半径rho * = rho(e)/ a获得的不同湍流水平的ETG湍流驱动电流量。仿真表明,由于湍流强度的陀螺-波姆定标,ETG湍流驱动的电流量随rho *的增加而增加。当rho *> 1/4000时,由ETG湍流驱动的电流对平衡q轮廓的扰动变得明显。即使在小巧的情况下,ETG湍流驱动电流与湍流强度之间的比例关系也表明,可以在边缘基座内部驱动相当大的本征电流,在该边缘基座中,电子温度曲线的陡峭梯度会在狭窄的范围内激发ETG湍流地区。由AIP Publishing发布。

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