The basic physics of drift-wave turbulence and zonal flows has long been studied within the framework of the wave-kinetic theory. Recently, this framework has been reexamined from first principles, which has led to more accurate yet still tractable "improved"wave-kinetic equations. In particular, these equations reveal an important effect of the zonal-flow "curvature"(the second radial derivative of the flow velocity) on the dynamics and stability of drift waves and zonal flows. We overview these recent findings and present a consolidated high-level picture of (mostly quasilinear) zonal-flow physics within reduced models of drift-wave turbulence.
CITATION STYLE
Zhu, H., & Dodin, I. Y. (2021). Wave-kinetic approach to zonal-flow dynamics: Recent advances. Physics of Plasmas, 28(3). https://doi.org/10.1063/5.0043784
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