Russell D A, D'Ippolito D A, Myra J R, Nevins W M, Xu X Q
Lodestar Research Corporation, Boulder, Colorado 80301, USA.
Phys Rev Lett. 2004 Dec 31;93(26 Pt 1):265001. doi: 10.1103/PhysRevLett.93.265001. Epub 2004 Dec 20.
Propagating filaments of enhanced plasma density, or blobs, observed in 3D numerical simulations of a diverted, neutral-fueled tokamak are studied. Fluctuations of vorticity, electrical potential phi, temperature Te, and current density J parallel associated with the blobs have a dipole structure perpendicular to the magnetic field and propagate radially with large E x B drift velocities (>1 km/s). The simulation results are consistent with a 3D blob dynamics model that incorporates increased parallel plasma resistivity (from neutral cooling of the X-point region), blob disconnection from the divertor sheath, X-point closure of the current loops, and collisional physics to sustain the phi, Te, J parallel dipoles.
研究了在一个具有偏滤器、中性燃料注入的托卡马克三维数值模拟中观测到的增强等离子体密度的传播细丝,即团块。与团块相关的涡度、电势φ、温度Te和沿平行方向的电流密度J的涨落具有垂直于磁场的偶极结构,并以大的E×B漂移速度(>1 km/s)径向传播。模拟结果与一个三维团块动力学模型一致,该模型考虑了平行等离子体电阻率的增加(由于X点区域的中性冷却)、团块与偏滤器鞘层的断开、电流环的X点闭合以及碰撞物理过程,以维持φ、Te、J平行偶极。