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  • 2015-2019  (3)
  • 1
    Keywords: Klimaschutz ; Meereskunde ; Polargebiete
    Type of Medium: Book
    Pages: 299 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 3980966887
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    Language: German
    Note: Enthält: 195 Abbildungen, 8 Tabellen und 10 Tafeln , Laut Widmung nn. Band der "Warnsignale" [ungezählte Buchreihe] , In Kooperation mit GEO. - Das vorliegende Buch ist die Fortsetzung der Buchreihe Warnsignal-Klima. An diesem populärwissenschaftlichen Buch beteiligen sich rund 70 Experten aus rund 40 Institutionen und wendet sich an Studenten, junge Wissenschaftler, Politiker und interessierte Laien , Literaturangaben , Literaturangaben. - Sachregister S. 294-299
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  • 2
    Publication Date: 2023-01-03
    Description: A new release of the Max Planck Institute for Meteorology Earth System Model version 1.2 (MPI-ESM1.2) is presented. The development focused on correcting errors in and improving the physical processes representation, as well as improving the computational performance, versatility, and overall user friendliness. In addition to new radiation and aerosol parameterizations of the atmosphere, several relatively large, but partly compensating, coding errors in the model's cloud, convection, and turbulence parameterizations were corrected. The representation of land processes was refined by introducing a multilayer soil hydrology scheme, extending the land biogeochemistry to include the nitrogen cycle, replacing the soil and litter decomposition model and improving the representation of wildfires. The ocean biogeochemistry now represents cyanobacteria prognostically in order to capture the response of nitrogen fixation to changing climate conditions and further includes improved detritus settling and numerous other refinements. As something new, in addition to limiting drift and minimizing certain biases, the instrumental record warming was explicitly taken into account during the tuning process. To this end, a very high climate sensitivity of around 7 K caused by low-level clouds in the tropics as found in an intermediate model version was addressed, as it was not deemed possible to match observed warming otherwise. As a result, the model has a climate sensitivity to a doubling of CO2 over preindustrial conditions of 2.77 K, maintaining the previously identified highly nonlinear global mean response to increasing CO2 forcing, which nonetheless can be represented by a simple two-layer model.
    Type: Article , PeerReviewed
    Format: text
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  • 3
    Publication Date: 2018-02-23
    Description: high-frequency temporal variability (HFV) and meso-scale spatial variability (MSV) of winter sea-ice drift in the Southern Ocean simulated with a global high-resolution (0.1°) sea ice-ocean model. Hourly model output is used to distinguish MSV characteristics via patterns of mean kinetic energy (MKE) and turbulent kinetic energy (TKE) of ice drift, surface currents, and wind stress, and HFV characteristics via time series of raw variables and correlations.We find that (1) along the ice edge, the MSVof ice drift coincides with that of surface currents, in particular such due to ocean eddies; (2) along the coast, theMKE of ice drift is substantially larger than its TKE and coincides with the MKE of wind stress; (3) in the interior of the ice pack, the TKE of ice drift is larger than its MKE, mostly following the TKE pattern of wind stress; (4) the HFVof ice drift is dominated by weather events, and, in the absence of tidal currents, locally and to a much smaller degree by inertial oscillations; (5) along the ice edge, the curl of the ice drift is highly correlated with that of surface currents, mostly reflecting the impact of ocean eddies. Where ocean eddies occur and the ice is relatively thin, ice velocity is characterized by enhanced relative vorticity, largely matching that of surface currents. Along the ice edge, ocean eddies produce distinct ice filaments, the realism of which is largely confirmed by high-resolution satellite passive-microwave data.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , peerRev
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