Author:
Ohshima S.,Suzuki T.,Matoike R.,Motojima G.,Kado S.,Mori A.,Miyashita A.,Kobayashi S.,Minami T.,Iwata A.,Qiu D.,Wang C.,Luo M.,Zhang P.,Kondo Y.,Nishino N.,Mizuuchi T.,Okada H.,Konoshima S.,Inagaki S.,Nagasaki K.
Abstract
AbstractUnderstanding pellet ablation physics is crucial to realizing efficient fueling into a high temperature plasma for the steady state operation of ITER and future fusion reactors. Here we report the first observation of the formation of fluctuation structures in the pellet plasmoid during the pellet ablation process by a fast camera in a medium-sized fusion device, Heliotron J. The fluctuation has a normalized fluctuation level of ~ 15% and propagates around the moving pellet across the magnetic field. By comparing the fluctuation structures with the shape of magnetic field lines calculated with the field line tracing code, we successfully reconstruct the spatio-temporal structure of the fluctuations during the pellet ablation process. The fluctuations are located at the locations displaced toroidally from the pellet and propagate in the cross-field direction around the pellet axis along the field line, indicating a three-dimensional behavior and structure of fluctuations. The fluctuation would be driven by a strong inhomogeneity formed around the pellet and invoke the relaxation of the gradient through a cross-field transport induced by the fluctuations, which could affect the pellet ablation and pellet fueling processes. Such fluctuations can be ubiquitously present at the inhomogeneity formed around a pellet in the pellet ablation process in fusion devices.
Funder
Japan Society for the Promotion of Science
“PLADys” JSPS Core-to-Core Program, A. Advanced Research Networks
NIFS Collaboration Research program
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献