Zobrazeno 1 - 10
of 97
pro vyhledávání: '"R, Schnur"'
Autor:
C. Hohenegger, P. Korn, L. Linardakis, R. Redler, R. Schnur, P. Adamidis, J. Bao, S. Bastin, M. Behravesh, M. Bergemann, J. Biercamp, H. Bockelmann, R. Brokopf, N. Brüggemann, L. Casaroli, F. Chegini, G. Datseris, M. Esch, G. George, M. Giorgetta, O. Gutjahr, H. Haak, M. Hanke, T. Ilyina, T. Jahns, J. Jungclaus, M. Kern, D. Klocke, L. Kluft, T. Kölling, L. Kornblueh, S. Kosukhin, C. Kroll, J. Lee, T. Mauritsen, C. Mehlmann, T. Mieslinger, A. K. Naumann, L. Paccini, A. Peinado, D. S. Praturi, D. Putrasahan, S. Rast, T. Riddick, N. Roeber, H. Schmidt, U. Schulzweida, F. Schütte, H. Segura, R. Shevchenko, V. Singh, M. Specht, C. C. Stephan, J.-S. von Storch, R. Vogel, C. Wengel, M. Winkler, F. Ziemen, J. Marotzke, B. Stevens
Publikováno v:
Geoscientific Model Development, Vol 16, Pp 779-811 (2023)
State-of-the-art Earth system models typically employ grid spacings of O(100 km), which is too coarse to explicitly resolve main drivers of the flow of energy and matter across the Earth system. In this paper, we present the new ICON-Sapphire model c
Externí odkaz:
https://doaj.org/article/362c8c697910471cad28b68421094fc1
Publikováno v:
Geoscientific Model Development, Vol 15, Pp 8581-8611 (2022)
We assess the land surface model JSBACHv4 (Jena Scheme for Biosphere Atmosphere Coupling in Hamburg version 4), which was recently developed at the Max Planck Institute for Meteorology as part of the effort to build the new Icosahedral Nonhydrostatic
Externí odkaz:
https://doaj.org/article/c35a79e27d0f4e1c9106e2532786b762
Autor:
M. A. Giorgetta, W. Sawyer, X. Lapillonne, P. Adamidis, D. Alexeev, V. Clément, R. Dietlicher, J. F. Engels, M. Esch, H. Franke, C. Frauen, W. M. Hannah, B. R. Hillman, L. Kornblueh, P. Marti, M. R. Norman, R. Pincus, S. Rast, D. Reinert, R. Schnur, U. Schulzweida, B. Stevens
Publikováno v:
Geoscientific Model Development, Vol 15, Pp 6985-7016 (2022)
Classical numerical models for the global atmosphere, as used for numerical weather forecasting or climate research, have been developed for conventional central processing unit (CPU) architectures. This hinders the employment of such models on curre
Externí odkaz:
https://doaj.org/article/9b10f5426b25493ab04af91d7ed1840c
Autor:
J. H. Jungclaus, S. J. Lorenz, H. Schmidt, V. Brovkin, N. Brüggemann, F. Chegini, T. Crüger, P. De‐Vrese, V. Gayler, M. A. Giorgetta, O. Gutjahr, H. Haak, S. Hagemann, M. Hanke, T. Ilyina, P. Korn, J. Kröger, L. Linardakis, C. Mehlmann, U. Mikolajewicz, W. A. Müller, J. E. M. S. Nabel, D. Notz, H. Pohlmann, D. A. Putrasahan, T. Raddatz, L. Ramme, R. Redler, C. H. Reick, T. Riddick, T. Sam, R. Schneck, R. Schnur, M. Schupfner, J.‐S. vonStorch, F. Wachsmann, K.‐H. Wieners, F. Ziemen, B. Stevens, J. Marotzke, M. Claussen
Publikováno v:
Journal of Advances in Modeling Earth Systems, Vol 14, Iss 4, Pp n/a-n/a (2022)
Abstract This work documents the ICON‐Earth System Model (ICON‐ESM V1.0), the first coupled model based on the ICON (ICOsahedral Non‐hydrostatic) framework with its unstructured, icosahedral grid concept. The ICON‐A atmosphere uses a nonhydro
Externí odkaz:
https://doaj.org/article/d4a9fd1ac03347ca8b5319a9e4b74f16
Publikováno v:
Geoscientific Model Development, Vol 12, Pp 4781-4802 (2019)
The dynamics of terrestrial ecosystems are shaped by the coupled cycles of carbon, nitrogen, and phosphorus, and these cycles are strongly dependent on the availability of water and energy. These interactions shape future terrestrial biosphere respon
Externí odkaz:
https://doaj.org/article/3b3ce97918994747ab5ad49de1285264
Autor:
M. A. Giorgetta, R. Brokopf, T. Crueger, M. Esch, S. Fiedler, J. Helmert, C. Hohenegger, L. Kornblueh, M. Köhler, E. Manzini, T. Mauritsen, C. Nam, T. Raddatz, S. Rast, D. Reinert, M. Sakradzija, H. Schmidt, R. Schneck, R. Schnur, L. Silvers, H. Wan, G. Zängl, B. Stevens
Publikováno v:
Journal of Advances in Modeling Earth Systems, Vol 10, Iss 7, Pp 1613-1637 (2018)
Abstract ICON‐A is the new icosahedral nonhydrostatic (ICON) atmospheric general circulation model in a configuration using the Max Planck Institute physics package, which originates from the ECHAM6 general circulation model, and has been adapted t
Externí odkaz:
https://doaj.org/article/3fc427b856534df281ad5eca3fa98649
Autor:
Johann Jungclaus, S J Lorenz, H Schmidt, V Brovkin, N Brüggemann, F Chegini, T Crüger, P De-Vrese, V Gayler, M A Giorgetta, O Gutjahr, H Haak, S Hagemann, M Hanke, T Ilyina, P Korn, J Kröger, L Linardakis, C Mehlmann, U Mikolajewicz, W A Müller, J E M S Nabel, D Notz, H Pohlmann, D A Putrasahan, T Raddatz, L Ramme, R Redler, C H Reick, T Riddick, T Sam, R Schneck, R Schnur, M Schupfner, J.-S Von Storch, F Wachsmann, K.-H Wieners, F Ziemen, B Stevens, J Marotzke, M Claussen
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::cf7a0e1800c0962a7402a7c978b0a624
https://doi.org/10.1002/essoar.10510175.1
https://doi.org/10.1002/essoar.10510175.1
Autor:
J. H. Jungclaus, S. J. Lorenz, C. Timmreck, C. H. Reick, V. Brovkin, K. Six, J. Segschneider, M. A. Giorgetta, T. J. Crowley, J. Pongratz, N. A. Krivova, L. E. Vieira, S. K. Solanki, D. Klocke, M. Botzet, M. Esch, V. Gayler, H. Haak, T. J. Raddatz, E. Roeckner, R. Schnur, H. Widmann, M. Claussen, B. Stevens, J. Marotzke
Publikováno v:
Climate of the Past, Vol 6, Iss 5, Pp 723-737 (2010)
A long-standing task in climate research has been to distinguish between anthropogenic climate change and natural climate variability. A prerequisite for fulfilling this task is the understanding of the relative roles of external drivers and internal
Externí odkaz:
https://doaj.org/article/f2caefd2a100494ebe19236f3f3ec502
Publikováno v:
Climate of the Past, Vol 6, Iss 5, Pp 627-644 (2010)
Climate proxy data provide noisy, and spatially incomplete information on some aspects of past climate states, whereas palaeosimulations with climate models provide global, multi-variable states, which may however differ from the true states due to u
Externí odkaz:
https://doaj.org/article/14ac9727bb4144c081cf98e6a94d925f
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