Understanding dynamics of large-scale atmospheric vortices with moist-convective shallow water model

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Abstract

Atmospheric jets and vortices which, together with inertia-gravity waves, constitute the principal dynamical entities of large-scale atmospheric motions, are well described in the framework of one- or multi-layer rotating shallow water models, which are obtained by vertically averaging of full "primitive" equations. There is a simple and physically consistent way to include moist convection in these models by adding a relaxational parameterization of precipitation and coupling precipitation with convective fluxes with the help of moist enthalpy conservation. We recall the construction of moist-convective rotating shallow water model (mcRSW) model and give an example of application to upper-layer atmospheric vortices.

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Rostami, M., & Zeitlin, V. (2016). Understanding dynamics of large-scale atmospheric vortices with moist-convective shallow water model. In Journal of Physics: Conference Series (Vol. 738). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/738/1/012055

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