Assimilation of Screen-level Observations for Soil Moisture Analysis in the INM RAS-MSU Multilayer Soil Model Included in the SL-AV Global Atmospheric Modeling System

Author:

Travova S. V.,Tolstykh M. A.

Publisher

Allerton Press

Subject

Atmospheric Science,Fluid Flow and Transfer Processes,Water Science and Technology

Reference61 articles.

1. N. N. Bogoslovskii, A. V. Shlyaeva, and M. A. Tolstykh, "The Assimilation Scheme for Soil and Screen-level Variables in the Global Semi-Lagrangian Model of Weather Forecast," Vychislitelnye Tekhnologii, 13 (2008) [in Russian].

2. E. M. Volodin and V. N. Lykosov, "Parametrization of Heat and Moisture Transfer in the Soil–Vegetation System for Use in Atmospheric General Circulation Models: 1. Formulation and Simulations Based on Local Observational Data," Izv. Atmos. Oceanic Phys., No. 4, 34 (1998).

3. S. V. Makhnorylova and M. A. Tolstykh, "A Simplified Extended Kalman Filter Assimilation of Soil Moisture for the SL-AV Global Medium-range Forecast Model," Meteorol. Gidrol., No. 6 (2017) [Russ. Meteorol. Hydrol., No. 6, 42 (2017)].

4. I. A. Rozinkina, "The Russian Hydrometeorological Center’s Soil–Vegetation–Atmospheric Surface Layer Model: Algorithm and Validation Results," Meteorol. Gidrol., No. 3 (2001) [Russ. Meteorol. Hydrol., No. 3 (2001)].

5. M. A. Tolstykh, V. V. Shashkin, R. Yu. Fadeev, et al., System of Atmospheric Modeling for the Seamless Prediction, Ed. by M. A. Tolstykh (Triada Ltd., Moscow, 2017) [in Russian].

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