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Markus Meier - Publications

  • Meier, H.E.M., Edman, M., Eilola, K., Placke, M., Neumann, T., Andersson, H.C., Brunnabend, S.E., Dieterich, C., Frauen, C., Friedland, R., Gröger, M., Gustafsson, B.G., Gustafsson, E., Isaev, A., Kniebusch, M., Kuznetsov, I., Müller-Karulis, B., Naumann, M., Omstedt, A., Ryabchenko, V., Saraiva, S., Savchuk, O.P. (2019). Assessment of Uncertainties in Scenario Simulations of Biogeochemical Cycles in the Baltic Sea. Frontiers in Marine Science 6:46: , DOI: 10.3389/fmars.2019.00046
  • Meier, H. E. M., C. Dieterich, K. Eilola, M. Gröger, A. Höglund, H. Radtke, S. Saraiva and I. Wåhlström (2019). Future projections of record-breaking sea surface temperature and cyanobacteria bloom events in the Baltic Sea. Ambio: online, doi: 10.1007/s13280-019-01235-5
  • Kniebusch, M., H. E. M. Meier, T. Neumann and F. Börgel (2019). Temperature variability of the Baltic Sea since 1850 and attribution to atmospheric forcing variables. J. Geophys. Res. Oceans 124: 4168-4187, doi: 10.1029/2018JC013948
  • Bauer, B., B. G. Gustafsson, K. Hyytiäinen, H. E. M. Meier, B. Müller-Karulis, S. Saraiva and M. T. Tomczak (2019). Food web and fisheries in the future Baltic Sea. Ambio: online, doi: 10.1007/s13280-019-01229-3
  • Kniebusch, M., H. E. M. Meier, T. Neumann and F. Börgel (2019). Temperature variability of the Baltic Sea since 1850 and attribution to atmospheric forcing variables. J. Geophys. Res. Oceans 124: 4168-4187, doi: 10.1029/2018JC013948
  • Dieterich, C., S. Wang, S. Schimanke, M. Gröger, B. Klein, R. Hordoir, P. Samuelsson, Y. Liu, L. Axell, A. Höglund and H. E. M. Meier (2019). Surface heat budget over the North Sea in climate change simulations. Atmosphere 10: 272, doi: 10.3390/atmos10050272
  • Gröger, M., L. Arneborg, C. Dieterich, A. Höglund and H. E. M. Meier (2019). Summer hydrographic changes in the Baltic Sea, Kattegat and Skagerrak projected in an ensemble of climate scenarios downscaled with a coupled regional ocean-sea ice-atmosphere model. Clim. Dyn.: online, doi: 10.1007/s00382-019-04908-9
  • Radtke, H., F. Börgel, S.-E. Brunnabend, A. Eggert, M. Kniebusch, H. E. M. Meier, D. Neumann, T. Neumann and M. Placke (2019). Validator - a web-based interactive tool for validation of ocean models at oceanographic stations. J. Open Source Software 7: 18, doi: 10.5334/jors.259
  • Meier, H. E. M., M. Edman, K. Eilola, M. Placke, T. Neumann, H. C. Andersson, S.-E. Brunnabend, C. Dieterich, C. Frauen, R. Friedland, M. Gröger, B. G. Gustafsson, E. Gustafsson, A. Isaev, M. Kniebusch, I. Kuznetsov, B. Müller-Karulis, M. Naumann, A. Omstedt, V. Ryabchenko, S. Saraiva and O. P. Savchuk (2019). Assessment of uncertainties in scenario simulations of biogeochemical cycles in the Baltic Sea. Front. Mar. Sci. 6: 46, doi: 10.3389/fmars.2019.00046
  • Zandersen, M., K. Hyytiäinen, H. E. M. Meier, M. T. Tomczak, B. Bauer, P. E. Haapasaari, J. E. Olesen, B. G. Gustafsson, J. C. Refsgaard, E. Fridell, S. Pihlainen, M. D. A. Le Tissier, A.-K. Kosenius and D. P. Van Vuuren (2019). Shared socio-economic pathways extended for the Baltic Sea: exploring long-term environmental problems. Reg. Environ. Change 19: 1073-1086, doi: 10.1007/s10113-018-1453-0
  • Saraiva, S., H. E. M. Meier, H. Andersson, A. Höglund, C. Dieterich, R. Hordoir and K. Eilola (2019). Uncertainties in projections of the Baltic Sea ecosystem driven by an ensemble of global climate models. Front. Earth Sci. 6: 244
  • Meier, H. E. M., M. Edman and members of the Baltic Earth working group on scenario simulations for the Baltic Sea 1960-2100 (2016). Estimating uncertainties in projections for the Baltic Sea region based upon an ensemble of regional climate system models. 1st Baltic Earth Conference, Multiple drivers for Earth system changes in the Baltic Sea region, Nida, Curonian Spit, Lithuania 13-17 June 2016: 179, https://www.baltic-earth.eu/publications/IBESPublications/No_9_Nida2016_Proceedings/BalticEarth_Nida2016_Proceedings_web.pdf
  • Ikauniece, A., H. E. Markus Meier and L. Kalniņa (2017). Introduction for the SI “Understanding the Baltic Sea”. Estuar. Coast. Shelf Sci. 195: 1-3, doi: 10.1016/j.ecss.2017.07.021
  • Meier, H. E. M., K. Eilola, E. Almroth-Rosell, S. Schimanke, M. Kniebusch, A. Höglund, P. Pemberton, Y. Liu, G. Väli and S. Saraiva (2019). Correction to: Disentangling the impact of nutrient load and climate changes on Baltic Sea hypoxia and eutrophication since 1850 (Climate Dynamics, (2018), 10.1007/s00382-018-4296-y). Clim. Dyn. 53: 1167-1169, doi: 10.1007/s00382-018-4483-x
  • Hieronymus, J., K. Eilola, M. Hieronymus, H. E. M. Meier, S. Saraiva and B. Karlson (2018). Causes of simulated long-term changes in phytoplankton biomass in the Baltic proper: a wavelet analysis. Biogeosciences 15: 5113-5129, doi: 10.5194/bg-15-5113-2018
  • Edman, M., K. Eilola, E. Almroth-Rosell, H. E. M. Meier, I. Wåhlström and L. Arneborg (2018). Nutrient retention in the Swedish coastal zone. Front. Mar. Sci. 5: 415, doi: 10.3389/fmars.2018.00415
  • Meier, H. E. M., M. K. Edman, K. J. Eilola, M. Placke, T. Neumann, H. C. Andersson, S.-E. Brunnabend, C. Dieterich, C. Frauen, R. Friedland, M. Gröger, B. G. Gustafsson, E. Gustafsson, A. Isaev, M. Kniebusch, I. Kuznetsov, B. Müller-Karulis, A. Omstedt, V. Ryabchenko, S. Saraiva and O. P. Savchuk (2018). Assessment of eutrophication abatement scenarios for the Baltic Sea by multi-model ensemble simulations. Front. Mar. Sci. 5: 440, doi: 10.3389/fmars.2018.00440
  • Saraiva, S., H. E. M. Meier, H. Andersson, A. Höglund, C. Dieterich, M. Gröger, R. Hordoir and K. Eilola (2019). Baltic Sea ecosystem response to various nutrient load scenarios in present and future climates. Clim. Dyn. 52: 3369-3387, doi: 10.1007/s00382-018-4330-0
  • Börgel, F., C. Frauen, T. Neumann, S. Schimanke and H. E. M. Meier (2018). Impact of the Atlantic Multidecadal Oscillation on Baltic Sea variability. Geophys. Res. Lett. 45: 9880-9888, doi: 10.1029/2018gl078943
  • Placke, M., H. E. M. Meier, U. Gräwe, T. Neumann, C. Frauen and Y. Liu (2018). Long-term mean circulation of the Baltic Sea as represented by various ocean circulation models. Front. Mar. Sci. 5: 287, doi: 10.3389/fmars.2018.00287
  • Meier, H. E. M., K. Eilola, E. Almroth-Rosell, S. Schimanke, M. Kniebusch, A. Höglund, P. Pemberton, Y. Liu, G. Väli and S. Saraiva (2018). Disentangling the impact of nutrient load and climate changes on Baltic Sea hypoxia and eutrophication since 1850. Clim. Dyn.: online, doi: 10.1007/s00382-018-4296-y
  • Meier, H.E.M., 2017: Climate of the ocean, Master course, Rostock University, winter term 2016/2017, 3 ECTS, 68 pp
  • Meier, H. E. M., G. Väli, M. Naumann, K. Eilola and C. Frauen (2018). Recently accelerated oxygen consumption rates amplify deoxygenation in the Baltic Sea. J. Geophys. Res. Oceans 123: 3227-3240, doi: doi:10.1029/2017JC013686
  • Bauer, B., H. E. M. Meier, M. Casini, A. Hoff, P. Margonski, A. Orio, S. Saraiva, J. Steenbeek and M. T. Tomczak (2018). Reducing eutrophication increases spatial extent of communities supporting commercial fisheries: a model case study. ICES J. Mar. Sci. 75: 1306-1317, doi: 10.1093/icesjms/fsy023
  • Schrum, C., J. Lowe, H. E. M. Meier, I. Grabemann, J. Holt, M. Mathis, T. Pohlmann, M. D. Skogen, A. Sterl and S. Wakelin (2016). Projected Change-North Sea. In: North Sea Region Climate Change Assessment. Ed. by M. Quante and F. Colijn. Cham: Springer: 175-217, doi: 10.1007/978-3-319-39745-0_6
  • Rechid, D., H. E. M. Meier, C. Schrum, M. Rummukainen, C. Moseley, K. Bülow, A. Elizalde, J. Su and T. Pohlmann (2016). Climate model simulations for the North Sea region. In: North Sea Region Climate Change Assessment. Ed. by M. Quante and F. Colijn. Cham: Springer: 495-504, doi: 10.1007/978-3-319-39745-0
  • Ho-Hagemann, H. T. M., M. Gröger, B. Rockel, M. Zahn, B. Geyer and H. E. M. Meier (2017). Effects of air-sea coupling over the North Sea and the Baltic Sea on simulated summer precipitation over Central Europe. Clim. Dyn. 49: 3851-3876, doi: 10.1007/s00382-017-3546-8
  • Liu, Y., H. E. M. Meier and K. Eilola (2017). Nutrient transports in the Baltic Sea - results from a 30-year physical-biogeochemical reanalysis. Biogeosciences 14: 2113-2131, doi: 10.5194/bg-14-2113-2017
  • Bartolino, V., H. Tian, U. Bergström, P. Jounela, E. Aro, C. Dieterich, H. E. M. Meier, M. Cardinale, B. Bland and M. Casini (2017). Spatio-temporal dynamics of a fish predator: density-dependent and hydrographic effects on Baltic Sea cod population. PLoS One 12: 0172004, doi: 10.1371/journal.pone.0172004
  • Gröger, M., C. Dieterich and M. H. E. Meier (2015). Thermal air-sea coupling in hindcast simulations for the North Sea and Baltic Sea on the NW European shelf. Tellus A 67: 26911
  • Fransner, F., J. Nycander, C.-M. Mörth, C. Humborg, H. E. M. Meier, R. Hordoir, E. Gustafsson and B. Deutsch (2016). Tracing terrestrial DOC in the Baltic Sea- A 3-D model study. Glob. Biogeochem. Cycles 30: 134-148, doi: 10.1002/2014GB005078
  • Meier, H. E. M., A. Höglund, K. Eilola and E. Almroth-Rosell (2017). Impact of accelerated future global mean sea level rise on hypoxia in the Baltic Sea. Clim. Dyn. 49: 163-172, doi: 10.1007/s00382-016-3333-y
  • Almroth-Rosell, E., M. Edman, K. Eilola, H. E. M. Meier and J. Sahlberg (2016). Modelling nutrient retention in the coastal zone of an eutrophic sea. Biogeosciences 13: 5753-5769, doi: 10.5194/bg-13-5753-2016
  • Wåhlström, I., C. Dieterich, P. Pemberton and H. E. M. Meier (2016). Impact of increasing inflow of warm Atlantic water on the sea-air exchange of carbon dioxide and methane in the Laptev Sea. J. Geophys. Res. Biogeosciences 121: 1867-1883, doi: 10.1002/2015JG003307
  • Schimanke, S. and H. E. M. Meier (2016). Decadal-to-centennial variability of salinity in the Baltic Sea. J. Clim. 29: 7173-7188, doi: 10.1175/jcli-d-15-0443.1
  • Holopainen, R., M. Lehtiniemi, H. E. M. Meier, J. Albertsson, E. Gorokhova, J. Kotta and M. Viitasalo (2016). Impacts of changing climate on the non-indigenous invertebrates in the northern Baltic Sea by end of the twenty-first century. Biol. Invasions 18: 3015-3032, doi: 10.1007/s10530-016-1197-z
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