202127th International Symposium on Atmospheric and Ocean Optics, Atmospheric PhysicsRequires access

Numerical simulation of extreme weather phenomena using high-resolution mesoscale meteorological models

Alexander V. Starchenko, Lubov I. Kizhnera, Sergey L. Odintsov, Evgeniy A. Danilkin, Sergey A. Prokhanov, Dmitriy V. Leshchinskiy, Artem I. Svarovsky

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Abstract

The results of the numerical prediction of dangerous weather phenomena (strong wind and fog) for the conditions of the city of Tomsk and the Tomsk district are considered. The numerical prediction is carried out with a resolution of 1 km using the WRF and TSUNM3 mesoscale meteorological models. The results of the calculations are compared with the observations obtained for selected dates in 2020 using the meteorological instruments of Research Equipment Sharing Center called “Atmosphere” of the Institute of Atmospheric Optics named after Zuev SB RAS and the airfield service of the Tomsk Airport.

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What this paper is about

The results of the numerical prediction of dangerous weather phenomena (strong wind and fog) for the conditions of the city of Tomsk and the Tomsk district are considered. The numerical prediction is carried out with a resolution of 1 km using the WRF and TSUNM3 mesoscale meteorological models. The results of the calculations are compared with the observations obtained for selected dates in 2020 using the meteorological instruments of Research Equipment Sharing Center called “Atmosphere” of the Institute of Atmospheric Optics named after Zuev SB RAS and the airfield service of the Tomsk Airport.

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Available abstract

The results of the numerical prediction of dangerous weather phenomena (strong wind and fog) for the conditions of the city of Tomsk and the Tomsk district are considered. The numerical prediction is carried out with a resolution of 1 km using the WRF and TSUNM3 mesoscale meteorological models. The results of the calculations are compared with the observations obtained for selected dates in 2020 using the meteorological instruments of Research Equipment Sharing Center called “Atmosphere” of the Institute of Atmospheric Optics named after Zuev SB RAS and the airfield service of the Tomsk Airport.

Key concepts: Mesoscale meteorology, Numerical weather prediction, Meteorology, High resolution, Environmental science, North American Mesoscale Model, Atmospheric model, Computer simulation

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