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Earth Science

D-Index
63
Citations
11334
World Ranking
1631
National Ranking
106

Overview

H. E. Markus Meier is affiliated with the Leibniz Institute for Baltic Sea Research in Germany. Their research primarily engages with various aspects of earth and planetary sciences, with a strong focus on oceanography and environmental science.

Their scholarly output includes significant contributions to both regional and global climate studies, particularly related to the Baltic Sea. Recent publications include:

  • Climate change in the Baltic Sea region: a summary (2022, Earth System Dynamics)
  • Oceanographic regional climate projections for the Baltic Sea until 2100 (2022, Earth System Dynamics)

These works emphasize factors such as oceanographic and atmospheric processes, marine and coastal ecosystems, and climate variability and models. Their research spans multiple subfields including oceanography, global and planetary change, atmospheric science, ecology, and environmental chemistry.

Frequent coauthors collaborating with Meier include Matthias Gröger, Florian Börgel, Cyril Dutheil, Thomas Neumann, and Hagen Radtke. Their research is commonly published in venues such as Earth System Dynamics, Climate Dynamics, Frontiers in Marine Science, Communications Earth & Environment, and Environmental Research Letters.

Main topics addressed in Meier's research encompass:

  • Oceanographic and Atmospheric Processes
  • Marine and coastal ecosystems
  • Climate variability and models
  • Geology and Paleoclimatology Research
  • Arctic and Antarctic ice dynamics
  • Methane Hydrates and Related Phenomena
  • Marine and environmental studies

Meier's research frequently integrates multidisciplinary approaches to assess environmental changes and human impacts within marine and coastal regions. This is supported by their numerous publications in Earth System Dynamics among other forums.

Notable papers co-authored by Meier highlight regional climate modeling and the dynamics of Baltic Sea salinity, reflecting detailed investigations into both terrestrial and marine environmental dynamics.

Best Publications

  • Hypoxia-Related Processes in the Baltic Sea

    Daniel J. Conley;Svante Björck;Erik Bonsdorff;Jacob Carstensen

  • Reconstructing the Development of Baltic Sea Eutrophication 1850–2006

    Bo G. Gustafsson;Frederik Schenk;Thorsten Blenckner;Kari Eilola

  • The development of the regional coupled ocean-atmosphere model RCAO

    Ralf Döscher;Ulrika Willen;Colin Jones;Anna Rutgersson

  • Baltic Sea climate in the late twenty-first century: a dynamical downscaling approach using two global models and two emission scenarios

    H. E. Markus Meier

  • A multiprocessor coupled ice-ocean model for the Baltic Sea: Application to salt inflow

    H. E. Markus Meier;Ralf Döscher;Torgny Faxén

  • Modeling the pathways and ages of inflowing salt- and freshwater in the Baltic Sea

    H.E. Markus Meier

  • On the dynamics of oxygen, phosphorus and cyanobacteria in the Baltic Sea; A model study

    Kari Eilola;H.E. Markus Meier;Elin Almroth

  • Modeling the combined impact of changing climate and changing nutrient loads on the Baltic Sea environment in an ensemble of transient simulations for 1961–2099

    H. E. M. Meier;R. Hordoir;H. C. Andersson;C. Dieterich

  • Hypoxia in future climates : a model ensemble study for the Baltic Sea

    H. E. M. Meier;H. C. Andersson;K. Eilola;B. G. Gustafsson

  • Projected future climate change and Baltic Sea ecosystem management.

    Agneta Andersson;H. E. Markus Meier;Matyas Ripszam;Owen Rowe

  • Modeling decadal variability of the Baltic Sea: 2. Role of freshwater inflow and large-scale atmospheric circulation for salinity

    H. E. Markus Meier;Frank Kauker

  • Simulated sea level in past and future climates of the Baltic Sea

    H. E. Markus Meier;Barry Broman;Erik Kjellström

  • Evaluation of biogeochemical cycles in an ensemble of three state-of-the-art numerical models of the Baltic Sea

    K. Eilola;Bo G. Gustafsson;I. Kuznetsov;H. E. M. Meier

  • Observational and numerical modeling methods for quantifying coastal ocean turbulence and mixing

    Hans Burchard;Peter D. Craig;Johannes R. Gemmrich;Hans van Haren

  • The development of the coupled regional ocean-atmosphere model RCAO

    Ralf Döscher;Ulrika Willen;Colin Jones;Anna Rutgersson

  • Impact of climate change on ecological quality indicators and biogeochemical fluxes in the Baltic sea: a multi-model ensemble study.

    H. E. Markus Meier;Bärbel Müller-Karulis;Helén C. Andersson;Christian Dieterich

  • Comparing reconstructed past variations and future projections of the Baltic Sea ecosystem—first results from multi-model ensemble simulations

    H E Markus Meier;Helén C Andersson;Berit Arheimer;Thorsten Blenckner

  • Estimating uncertainties of projected Baltic Sea salinity in the late 21st century

    H. E. Markus Meier;Erik Kjellström;L. Phil Graham

  • Combined effects of global climate change and regional ecosystem drivers on an exploited marine food web

    Susa Niiranen;Susa Niiranen;Johanna Yletyinen;Johanna Yletyinen;Maciej T. Tomczak;Thorsten Blenckner

  • Disentangling the impact of nutrient load and climate changes on Baltic Sea hypoxia and eutrophication since 1850

    H. E. M. Meier;H. E. M. Meier;K. Eilola;E. Almroth-Rosell;S. Schimanke

  • Reconstructing the Development of Baltic Sea Eutrophication

    Bo G. Gustafsson;Frederik Schenk;Thorsten Blenckner;Kari Eilola

Frequent Co-Authors

Kari Eilola
Kari Eilola Swedish Meteorological and Hydrological Institute
Thomas Neumann
Thomas Neumann Leibniz Institute for Baltic Sea Research
Bo G. Gustafsson
Bo G. Gustafsson Stockholm University
Thorsten Blenckner
Thorsten Blenckner Stockholm Resilience Centre
Erik Kjellström
Erik Kjellström Swedish Meteorological and Hydrological Institute
Bärbel Müller-Karulis
Bärbel Müller-Karulis Stockholm University
Oleg P. Savchuk
Oleg P. Savchuk Stockholm University
Tarmo Soomere
Tarmo Soomere Tallinn University of Technology
Brian R. MacKenzie
Brian R. MacKenzie Technical University of Denmark
Eduardo Zorita
Eduardo Zorita Helmholtz-Zentrum Geesthacht Centre for Materials and Coastal Research

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