Role of Pressure Gradient on Intrinsic Toroidal Rotation in Tokamak Plasmas
M. Yoshida, Yoshihiro Kamada, H. Takenaga, Y. Sakamoto, H. Urano, N. Oyama, G. Matsunaga
Abstract
M. Yoshida, Yoshihiro Kamada, H. Takenaga, Y. Sakamoto, H. Urano, N. Oyama, G. Matsunaga
Abstract
The toroidal plasma rotation generated by the external momentum input and by the plasma itself (intrinsic rotation) has been separated through a novel momentum transport analysis in the JT-60U tokamak device. The toroidal rotation, which is not determined by the momentum transport coefficients and the external momentum input, has been observed. It is found that this intrinsic rotation is locally determined by the local pressure gradient and increases with increasing pressure gradient. This trend is almost the same for various plasmas: low and high confinement mode, co and counterrotating plasmas.
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The toroidal plasma rotation generated by the external momentum input and by the plasma itself (intrinsic rotation) has been separated through a novel momentum transport analysis in the JT-60U tokamak device. The toroidal rotation, which is not determined by the momentum transport coefficients and the external momentum input, has been observed. It is found that this intrinsic rotation is locally determined by the local pressure gradient and increases with increasing pressure gradient. This trend is almost the same for various plasmas: low and high confinement mode, co and counterrotating plasmas.
Key concepts: Toroid, Tokamak, Plasma, Rotation (mathematics), Momentum (technical analysis), Physics, Pressure gradient, Momentum diffusion