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首页> 外文期刊>Plasma and Fusion Research >Particle Flow during Sawtooth Reconnection: Numerical Simulations of Experimental Observations
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Particle Flow during Sawtooth Reconnection: Numerical Simulations of Experimental Observations

机译:锯齿重新连接过程中的粒子流:实验观察的数值模拟

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摘要

The core plasma density in ohmic, sawtoothing regime in Tore Supra and JET tokamaks measured by fast-sweeping reflectometry develops a central peak. This peak is surrounded by a density plateau, which extends up to the q = 1 reconnection surface. Such mexican hat like profiles differ from the smooth dome of the temperature profile. Detailed tomographic reconstructions of the density in the poloidal plane show the development of crescent and ring structures during the sawtooth cycle. 3D full MHD nonlinear simulations with the XTOR-2F code recover these structures and show that they can be explained by the MHD activity related to the sawtooth instability. They show also that the electron density evolution is dominated by the perpendicular MHD flows, while the temperature, obtained with ECE measurements is dominated by parallel diffusion.
机译:通过快速扫描反射法测量的Tore Supra和JET托卡马克在欧姆,锯齿状态下的核心等离子体密度形成一个中心峰。该峰被密度平台所包围,该平台一直延伸到q = 1的重新连接表面。这种墨西哥帽状轮廓不同于温度轮廓的平滑圆顶。极平面中密度的详细层析成像重建表明,在锯齿周期中新月形和环形结构的发展。使用XTOR-2F代码进行的3D完整MHD非线性仿真恢复了这些结构,并表明可以用与锯齿不稳定性相关的MHD活动来解释它们。他们还表明,电子密度的变化主要由垂直的MHD流控制,而通过ECE测量获得的温度则由平行扩散控制。

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