201925th International Symposium on Atmospheric and Ocean Optics: Atmospheric PhysicsRequires access

Numerical Simulation of Precipitation at Siberian Weather Conditions

Andrey A. Bart, Lubov I. Kizhner, Alexander V. Starchenko

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Abstract

An updated nonhydrostatic mesoscale meteorological model TSUNM3 is represented herein. The model was improved by inclusion of the moisture microphysics parameterization scheme WSM6 which allows to simulate the formation of ice crystals and precipitation in the form of rain, snow or graupel (hail). The results of the application of this model as well as the Weather Research and Forecasting (WRF) model adapted to the Siberian region conditions showed the prospects of TSUNM3 model application for different Siberian seasons.

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What this paper is about

An updated nonhydrostatic mesoscale meteorological model TSUNM3 is represented herein. The model was improved by inclusion of the moisture microphysics parameterization scheme WSM6 which allows to simulate the formation of ice crystals and precipitation in the form of rain, snow or graupel (hail). The results of the application of this model as well as the Weather Research and Forecasting (WRF) model adapted to the Siberian region conditions showed the prospects of TSUNM3 model application for different Siberian seasons.

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Available abstract

An updated nonhydrostatic mesoscale meteorological model TSUNM3 is represented herein. The model was improved by inclusion of the moisture microphysics parameterization scheme WSM6 which allows to simulate the formation of ice crystals and precipitation in the form of rain, snow or graupel (hail). The results of the application of this model as well as the Weather Research and Forecasting (WRF) model adapted to the Siberian region conditions showed the prospects of TSUNM3 model application for different Siberian seasons.

Key concepts: Weather Research and Forecasting Model, Graupel, Mesoscale meteorology, Precipitation, Snow, Meteorology, Environmental science, Climatology

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