Zobrazeno 1 - 10
of 95
pro vyhledávání: '"F. Steinhilber"'
Autor:
J. G. Anet, S. Muthers, E. V. Rozanov, C. C. Raible, A. Stenke, A. I. Shapiro, S. Brönnimann, F. Arfeuille, Y. Brugnara, J. Beer, F. Steinhilber, W. Schmutz, T. Peter
Publikováno v:
Climate of the Past, Vol 10, Iss 3, Pp 921-938 (2014)
The aim of this work is to elucidate the impact of changes in solar irradiance and energetic particles versus volcanic eruptions on tropospheric global climate during the Dalton Minimum (DM, AD 1780–1840). Separate variations in the (i) solar irrad
Externí odkaz:
https://doaj.org/article/7b53db10808e46de87f4e9496dab12fb
Autor:
J. G. Anet, S. Muthers, E. Rozanov, C. C. Raible, T. Peter, A. Stenke, A. I. Shapiro, J. Beer, F. Steinhilber, S. Brönnimann, F. Arfeuille, Y. Brugnara, W. Schmutz
Publikováno v:
Atmospheric Chemistry and Physics, Vol 13, Iss 21, Pp 10951-10967 (2013)
The response of atmospheric chemistry and dynamics to volcanic eruptions and to a decrease in solar activity during the Dalton Minimum is investigated with the fully coupled atmosphere–ocean chemistry general circulation model SOCOL-MPIOM (modeling
Externí odkaz:
https://doaj.org/article/053d37cdee98440b8b4f73fb05a149de
Autor:
M. Morellón, A. Pérez-Sanz, J. P. Corella, U. Büntgen, J. Catalán, P. González-Sampériz, J. J. González-Trueba, J. A. López-Sáez, A. Moreno, S. Pla-Rabes, M. Á. Saz-Sánchez, P. Scussolini, E. Serrano, F. Steinhilber, V. Stefanova, T. Vegas-Vilarrúbia, B. Valero-Garcés
Publikováno v:
Climate of the Past, Vol 8, Iss 2, Pp 683-700 (2012)
This paper reviews multi-proxy paleoclimatic reconstructions with robust age-control derived from lacustrine, dendrochronological and geomorphological records and characterizes the main environmental changes that occurred in the Southern Pyrenees dur
Externí odkaz:
https://doaj.org/article/acc03415baec40e88cf20738dbb84be0
Autor:
G. A. Schmidt, J. H. Jungclaus, C. M. Ammann, E. Bard, P. Braconnot, T. J. Crowley, G. Delaygue, F. Joos, N. A. Krivova, R. Muscheler, B. L. Otto-Bliesner, J. Pongratz, D. T. Shindell, S. K. Solanki, F. Steinhilber, L. E. A. Vieira
Publikováno v:
Geoscientific Model Development, Vol 5, Iss 1, Pp 185-191 (2012)
We update the forcings for the PMIP3 experiments for the Last Millennium to include new assessments of historical land use changes and discuss new suggestions for calibrating solar activity proxies to total solar irradiance.
Externí odkaz:
https://doaj.org/article/69985241940d44eab2c8bf9974b37c65
Autor:
G. A. Schmidt, J. H. Jungclaus, C. M. Ammann, E. Bard, P. Braconnot, T. J. Crowley, G. Delaygue, F. Joos, N. A. Krivova, R. Muscheler, B. L. Otto-Bliesner, J. Pongratz, D. T. Shindell, S. K. Solanki, F. Steinhilber, L. E. A. Vieira
Publikováno v:
Geoscientific Model Development, Vol 4, Iss 1, Pp 33-45 (2011)
Simulations of climate over the Last Millennium (850–1850 CE) have been incorporated into the third phase of the Paleoclimate Modelling Intercomparison Project (PMIP3). The drivers of climate over this period are chiefly orbital, solar, volcanic, c
Externí odkaz:
https://doaj.org/article/2b6a8685440848e6806614c3657b4e0d
Akademický článek
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Akademický článek
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Publikováno v:
Solar Physics. 289:3207-3229
Paleo-cosmic-ray (PCR) records based on cosmogenic 10Be and 14C data are used to study the variations in cosmic-ray intensity and solar activity over the past 9400 years. There are four strong correlations with the motion of the Jovian planets; the p
Autor:
Stefan Brönnimann, Christoph C. Raible, Stefan Muthers, Alexander Shapiro, Juerg Beer, Florian Xavier Arfeuille, Julien Anet, Werner Schmutz, F. Steinhilber, Thomas Peter, Yuri Brugnara, Eugene Rozanov
Publikováno v:
Journal of Geophysical Research: Atmospheres. 119:1340-1355
An important key for the understanding of the dynamic response to large tropical volcanic eruptions is the warming of the tropical lower stratosphere and the concomitant intensification of the polar vortices. Although this mechanism is reproduced by
Autor:
Yuri Brugnara, Alexander Shapiro, Julien Anet, Werner Schmutz, Eugene Rozanov, F. Steinhilber, Andrea Stenke, Thomas Peter, Juerg Beer, Christoph C. Raible, Stefan Brönnimann, Florian Xavier Arfeuille, Stefan Muthers
Publikováno v:
Geoscientific Model Development
Muthers, Stefan; Anet, J. G.; Stenke, A.; Raible, Christoph; Rozanov, E.; Brönnimann, Stefan; Peter, T.; Arfeuille, Florian Xavier; Shapiro, A. I.; Beer, J.; Steinhilber, F.; Brugnara, Yuri; Schmutz, W. (2014). The coupled atmosphere–chemistry–ocean model SOCOL-MPIOM. Geoscientific model development (GMD), 7(5), pp. 2157-2179. Copernicus Publications 10.5194/gmd-7-2157-2014
GEOSCIENTIFIC MODEL DEVELOPMENT
Geoscientific Model Development, 7 (5)
Geoscientific Model Development, Vol 7, Iss 5, Pp 2157-2179 (2014)
Muthers, Stefan; Anet, J. G.; Stenke, A.; Raible, Christoph; Rozanov, E.; Brönnimann, Stefan; Peter, T.; Arfeuille, Florian Xavier; Shapiro, A. I.; Beer, J.; Steinhilber, F.; Brugnara, Yuri; Schmutz, W. (2014). The coupled atmosphere–chemistry–ocean model SOCOL-MPIOM. Geoscientific model development (GMD), 7(5), pp. 2157-2179. Copernicus Publications 10.5194/gmd-7-2157-2014
GEOSCIENTIFIC MODEL DEVELOPMENT
Geoscientific Model Development, 7 (5)
Geoscientific Model Development, Vol 7, Iss 5, Pp 2157-2179 (2014)
The newly developed atmosphere–ocean-chemistry-climate model SOCOL-MPIOM is presented by demonstrating the influence of the interactive chemistry module on the climate state and the variability. Therefore, we compare pre-industrial control simulati