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Transport theory for potato orbits in an axisymmetric torus with finite toroidal flow speed

机译:有限环面速度下轴对称圆环中马铃薯轨道的输运理论

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Transport theory for potato orbits in the region near the magnetic axis in an axisymmetric torus such as tokamaks and spherical tori is extended to the situation where the toroidal flow speed is of the order of the sonic speed as observed in National Spherical Torus Experiment [E. J. Synakowski, M. G. Bell, R. E. Bell , Nucl. Fusion 43, 1653 (2003)]. It is found that transport fluxes such as ion radial heat flux, and bootstrap current density are modified by a factor of the order of the square of the toroidal Mach number. The consequences of the orbit squeezing are also presented. The theory is developed for parabolic (in radius r) plasma profiles. A method to apply the results of the theory for the transport modeling is discussed. (C) 2004 American Institute of Physics.
机译:像托卡马克和球形托里这样的轴对称圆环中靠近磁轴区域的马铃薯轨道的输运理论被扩展到环流速度约为声速的情况,如国家球形圆环实验所观察到的。 J.Synakowski,M.G.Bell,R.E.Bell,Nucl。 Fusion 43,1653(2003)]。已经发现,诸如离子径向热通量和自举电流密度之类的传输通量被环形马赫数的平方量级的因数所改变。还介绍了轨道挤压的后果。该理论是针对抛物线(半径为r)的等离子体轮廓而开发的。讨论了将理论结果应用于运输模型的方法。 (C)2004年美国物理研究所。

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