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首页> 外文期刊>Plasma physics and controlled fusion >Optimization of transport suppression barriers generated by externally driven Alfven waves in D-shaped, low aspect ratio tokamaks
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Optimization of transport suppression barriers generated by externally driven Alfven waves in D-shaped, low aspect ratio tokamaks

机译:优化外部驱动的Alfven波在D形,低纵横比托卡马克中产生的传输抑制壁垒

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In an effort to optimize the internal transport barriers (ITBs) generated by externally launched mode-converted fast waves (FWs) in pre-heated spherical tokamaks (STs), we have carried out a systematic parametric investigation with respect to the rf waves and antenna characteristics; as a study case, a START like device has been considered. Within the framework of a plasma model including both kinetic effects (collisionless Landau damping on passing electrons) and collisional damping on both trapped and passing electrons and ions, and starting with the solution of the full wave equation for a ST-plasma, we show that optimized ITBs, suitable for the stabilization of plasma turbulence (e.g. overpassing the maximum growth rate of the ITG-instability,gamma(ITG)) in STs can be generated by the aid of externally launched FW and mode-converted to kinetic Alfven waves. This result holds in spite of the limiting trapped-particles associated squeezing factor S present in the non-linear equation for E, (via the viscosity coefficient mu(thetai) proportional to S(3/2), S = S(dE(r)/dr)). [References: 31]
机译:为了优化在预热的球形托卡马克(ST)中由外部发射的模式转换快波(FW)产生的内部传输壁垒(ITB),我们对RF波和天线进行了系统的参数研究特性作为研究案例,已考虑使用类似START的设备。在等离子体模型的框架内,包括动力学效应(对传递电子的无碰撞Landau阻尼)和对捕获和传递电子和离子的碰撞阻尼,并从ST等离子体的全波方程解开始,我们证明了优化的ITB可以借助外部发射的FW产生并转换为动力学Alfven波,从而适合于ST中等离子体湍流的稳定化(例如,超过ITG不稳定性的最大增长率γ(ITG))。尽管在E的非线性方程中存在受限的与捕集颗粒相关的挤压因子S(通过与 S (3/2)成比例的粘度系数mu(thetai)成比例,S = S(dE) (r)/ dr))。 [参考:31]

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