Interplay between fluctuation driven toroidal axisymmetric flows and resistive ballooning mode turbulence

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Abstract

An interplay between fluctuation driven toroidal axisymmetric flows (convective cell modes) and resistive ballooning mode turbulence after the pedestal collapse is numerically studied by a four-field reduced MHD model in the BOUT++ framework. The strong flow shear suppresses the radial transport of pressure filaments, and the pressure profile in the pedestal region is partially recovered. As a result, a secondary instability is quasilinearly excited, which yields a secondary collapse. The subsequent damped oscillation is also analyzed by phase diagram analysis.

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Seto, H., Xu, X. Q., Dudson, B. D., & Yagi, M. (2019). Interplay between fluctuation driven toroidal axisymmetric flows and resistive ballooning mode turbulence. Physics of Plasmas, 26(5). https://doi.org/10.1063/1.5086998

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