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pro vyhledávání: '"A. D. Resnyanskii"'
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Akademický článek
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Autor:
Kh. Ingel, A. A. Makosko
Publikováno v:
Russian Meteorology and Hydrology. 41:146-150
The critical comments to the publications by the authors ofthe present paper that were given in [10] (the publications deal with the possible effects of gravity field inhomogeneities in the atmosphere and ocean) are discussed. In the authors' opinion
Publikováno v:
Russian Meteorology and Hydrology. 46:94-105
The quality of simulation of model fields is analyzed depending on the assimilation of various types of data using the PDAF software product assimilating synthetic data into the NEMO global ocean model. Several numerical experiments are performed to
Publikováno v:
Russian Meteorology and Hydrology. 45:96-104
A method for the assimilation of data on sea ice concentration in the NEMO—LIM3 multicategory sea ice model is presented for application in the operational technology of the ocean state diagnosis and forecasting. The method is based on the relaxati
Publikováno v:
DEDICATED TO THE 90TH ANNIVERSARY OF PROF. K.N. FEDOROV OCEAN PHYSICS. 47:139-151
To analyze the intra-annual variability of the thermal and dynamic characteristics of the ocean, we used the calculations based on the NEMO model, including the assimilation of observational temperature and salinity data by Argo buoys, as well as sat
Publikováno v:
Russian Meteorology and Hydrology. 44:33-44
The results of numerical experiments on setting the NEMO model during its preparation for the assimilation of oceanographic data are presented. The modeling of ocean circulation and sea ice characteristics is performed with two different configuratio
Autor:
A. A. Zelenko, Yu. D. Resnyanskii
Publikováno v:
Russian Meteorology and Hydrology. 43:797-814
The paper presents an overview of the current marine observational systems which provide primary information for operational monitoring and predicting the variability of the main hydrophysical fields on the scales from several tens to several thousan
Autor:
Yu. D. Resnyanskii, R. M. Vil’fand, B. S. Strukov, A. A. Zelenko, P. I. Svirenko, Michael Tsyrulnikov
Publikováno v:
Izvestiya, Atmospheric and Oceanic Physics. 52:443-454
A new version of the ocean data assimilation system (ODAS) developed at the Hydrometcentre of Russia is presented. The assimilation is performed following the sequential scheme analysis–forecast–analysis. The main components of the ODAS are proce
Publikováno v:
Proceedings of the First International Conference on Ocean Thermohydromechanics-2017.