Items where Author is "Koldunov, Nikolay V"

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Article
Sein, D. V. , Gröger, M. , Cabos, W. , Alvarez‐Garcia, F. J. , Hagemann, S. , Pinto, J. G. , Izquierdo, A. , Vara, A. , Koldunov, N. V. , Dvornikov, A. Y. , Limareva, N. , Alekseeva, E. , Martinez‐Lopez, B. and Jacob, D. (2020)
Regionally Coupled Atmosphere‐Ocean‐Marine Biogeochemistry Model ROM: 2. Studying the Climate Change Signal in the North Atlantic and Europe ,
Journal of Advances in Modeling Earth Systems, 12 (8), e2019MS001646 .
doi:https://www.doi.org/10.1029/2019ms001646 , hdl:10013/epic.34f4df53-dcbf-4669-9126-3a1d405358bd

Article
Wang, Q. , Koldunov, N. V. , Danilov, S. , Sidorenko, D. , Wekerle, C. , Scholz, P. , Bashmachnikov, I. L. and Jung, T. (2020)
Eddy Kinetic Energy in the Arctic Ocean From a Global Simulation With a 1‐km Arctic ,
Geophysical Research Letters, 47 (14) .
doi:https://www.doi.org/10.1029/2020gl088550 , hdl:10013/epic.5eccd3fb-5819-482b-ac29-f689e604599f
[thumbnail of Wang_EKE_AO_2020.pdf]
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Article
de la Vara, A. , Cabos, W. , Sein, D. V. , Sidorenko, D. , Koldunov, N. V. , Koseki, S. , Soares, P. M. and Danilov, S. (2020)
On the impact of atmospheric vs oceanic resolutions on the representation of the sea surface temperature in the South Eastern Tropical Atlantic ,
Climate Dynamics, 54 (11-12), pp. 4733-4757 .
doi:https://www.doi.org/10.1007/s00382-020-05256-9 , hdl:10013/epic.6e3c3e2e-f7de-4a3c-ab93-87c5260094ef
[thumbnail of Vara2020_Article_OnTheImpactOfAtmosphericVsOcea-3.pdf]
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Article
Rackow, T. , Sein, D. V. , Semmler, T. , Danilov, S. , Koldunov, N. V. , Sidorenko, D. , Wang, Q. and Jung, T. (2019)
Sensitivity of deep ocean biases to horizontal resolution in prototype CMIP6 simulations with AWI-CM1.0 ,
Geoscientific Model Development, 12 (7), pp. 2635-2656 .
doi:https://www.doi.org/10.5194/gmd-12-2635-2019 , hdl:10013/epic.60ba31c2-007e-47f9-ad75-644597b95e58
[thumbnail of gmd-12-2635-2019-4.pdf]
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Article
Koldunov, N. V. , Danilov, S. , Sidorenko, D. , Hutter, N. , Losch, M. , Goessling, H. , Rakowsky, N. , Scholz, P. , Sein, D. , Wang, Q. and Jung, T. (2019)
Fast EVP Solutions in a High‐Resolution Sea Ice Model ,
Journal of Advances in Modeling Earth Systems, 11 (5), pp. 1269-1284 .
doi:https://www.doi.org/10.1029/2018ms001485 , hdl:10013/epic.c1206479-34b5-49be-962f-4e1edf7112a3

Article
Akperov, M. , Rinke, A. , Mokhov, I. I. , Semenov, V. A. , Parfenova, M. R. , Matthes, H. , Adakudlu, M. , Boberg, F. , Christensen, J. H. , Dembitskaya, M. A. , Dethloff, K. , Fettweis, X. , Gutjahr, O. , Heinemann, G. , Koenigk, T. , Koldunov, N. V. , Laprise, R. , Mottram, R. , Nikiéma, O. , Sein, D. , Sobolowski, S. , Winger, K. and Zhang, W. (2019)
Future projections of cyclone activity in the Arctic for the 21st century from regional climate models (Arctic-CORDEX) ,
Global and Planetary Change, 182 , p. 103005 .
doi:https://www.doi.org/10.1016/j.gloplacha.2019.103005 , hdl:10013/epic.53d8f530-062e-497e-8f3d-822c75c81c96
[thumbnail of 1-s20-S0921818119301742-main.pdf]
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Article
Koldunov, N. V. , Aizinger, V. , Rakowsky, N. , Scholz, P. , Sidorenko, D. , Danilov, S. and Jung, T. (2019)
Scalability and some optimization of the Finite-volumE Sea ice–Ocean Model, Version 2.0 (FESOM2) ,
Geoscientific Model Development, 12 (9), pp. 3991-4012 .
doi:https://www.doi.org/10.5194/gmd-12-3991-2019 , hdl:10013/epic.7fe24b7f-8396-494b-9093-4362c1b37244

Article
Xu, J. , Koldunov, N. V. , Remedio, A. R. C. , Sein, D. V. , Rechid, D. , Zhi, X. , Jiang, X. , Xu, M. , Zhu, X. , Fraedrich, K. and Jacob, D. (2018)
Downstream effect of Hengduan Mountains on East China in the REMO regional climate model ,
Theoretical and Applied Climatology, 135 (3-4), pp. 1641-1658 .
doi:https://www.doi.org/10.1007/s00704-018-2721-0 , hdl:10013/epic.6dc0d0ab-4d66-42c7-b761-c7adbb4d4d15

Article
Sein, D. V. , Koldunov, N. V. , Danilov, S. , Sidorenko, D. , Wekerle, C. , Cabos, W. , Rackow, T. , Scholz, P. , Semmler, T. , Wang, Q. and Jung, T. (2018)
The Relative Influence of Atmospheric and Oceanic Model Resolution on the Circulation of the North Atlantic Ocean in a Coupled Climate Model ,
Journal of Advances in Modeling Earth Systems, 10 (8), pp. 2026-2041 .
doi:https://www.doi.org/10.1029/2018ms001327 , hdl:10013/epic.1f744da5-2b9a-4c51-a0ad-61e314f8044d
[thumbnail of 2018MS001327.pdf]
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Article
Ivanov, V. , Smirnov, A. , Alexeev, V. , Koldunov, N. V. , Repina, I. and Semenov, V. (2018)
Contribution of Convection‐Induced Heat Flux to Winter Ice Decay in the Western Nansen Basin ,
Journal of Geophysical Research: Oceans, 123 (9), pp. 6581-6597 .
doi:https://www.doi.org/10.1029/2018jc013995 , hdl:10013/epic.c0ebc4b2-79b4-44ee-917e-40125f629d01

Article
Akperov, M. , Rinke, A. , Mokhov, I. I. , Matthes, H. , Semenov, V. A. , Adakudlu, M. , Cassano, J. , Christensen, J. H. , Dembitskaya, M. A. , Dethloff, K. , Fettweis, X. , Glisan, J. , Gutjahr, O. , Heinemann, G. , Koenigk, T. , Koldunov, N. V. , Laprise, R. , Mottram, R. , Nikiéma, O. , Scinocca, J. F. , Sein, D. , Sobolowski, S. , Winger, K. and Zhang, W. (2018)
Cyclone Activity in the Arctic From an Ensemble of Regional Climate Models (Arctic CORDEX) ,
Journal of Geophysical Research: Atmospheres, 123 (5), pp. 2537-2554 .
doi:https://www.doi.org/10.1002/2017jd027703 , hdl:10013/epic.af4764f1-1070-4706-ae26-7902f2fe37e6

Article
Cabos, W. , Sein, D. V. , Durán-Quesada, A. , Liguori, G. , Koldunov, N. V. , Martínez-López, B. , Alvarez, F. , Sieck, K. , Limareva, N. and Pinto, J. G. (2018)
Dynamical downscaling of historical climate over CORDEX Central America domain with a regionally coupled atmosphere–ocean model ,
Climate Dynamics, 52 (7-8), pp. 4305-4328 .
doi:https://www.doi.org/10.1007/s00382-018-4381-2 , hdl:10013/epic.895ef490-70d0-4dcd-bad3-b28cc2b09c00
[thumbnail of Cabos2018_Article_DynamicalDownscalingOfHistoric.pdf]
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Sein, D. V. , Koldunov, N. V. , Danilov, S. , Wang, Q. , Sidorenko, D. , Fast, I. , Rackow, T. , Cabos, W. and Jung, T. (2017)
Ocean Modeling on a Mesh With Resolution Following the Local Rossby Radius ,
Journal of Advances in Modeling Earth Systems, 9 (7), pp. 2601-2614 .
doi:https://www.doi.org/10.1002/2017ms001099
[thumbnail of jame20503.pdf]
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Article
Koldunov, N. V. , Köhl, A. , Serra, N. and Stammer, D. (2017)
Sea ice assimilation into a coupled ocean–sea ice model using its adjoint ,
The Cryosphere, 11 (5), pp. 2265-2281 .
doi:https://www.doi.org/10.5194/tc-11-2265-2017 , hdl:10013/epic.51902
[thumbnail of tc-11-2265-2017.pdf]
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Article
Cabos, W. , Sein, D. V. , Pinto, J. G. , Fink, A. H. , Koldunov, N. V. , Alvarez, F. , Izquierdo, A. , Keenlyside, N. and Jacob, D. (2016)
The South Atlantic Anticyclone as a key player for the representation of the tropical Atlantic climate in coupled climate models ,
Climate Dynamics, 48 (11-12), pp. 4051-4069 .
doi:https://www.doi.org/10.1007/s00382-016-3319-9 , hdl:10013/epic.48580
[thumbnail of cli_dyn_SAA.pdf]
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Sein, D. V. , Koldunov, N. V. , Pinto, J. G. and Cabos, W. (2014)
Sensitivity of simulated regional Arctic climate to the choice of coupled model domain ,
Tellus A: Dynamic Meteorology and Oceanography, 66 (1), p. 23966 .
doi:https://www.doi.org/10.3402/tellusa.v66.23966 , hdl:10013/epic.43795
[thumbnail of 23966-128567-1-PB.pdf]
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