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Environmental Sciences

D-Index
35
Citations
6715
World Ranking
9251
National Ranking
354

Overview

Robert Colman is affiliated with the Bureau of Meteorology in Australia and has contributed extensively to research in environmental and Earth sciences. Their work primarily focuses on climate variability, atmospheric processes, and global change, demonstrated through multiple publications in prominent scientific journals.

Their research spans various fields of study, including:

  • Environmental Science
  • Earth and Planetary Sciences

Within these broader fields, they engage with specific subfields such as:

  • Global and Planetary Change
  • Atmospheric Science
  • Oceanography
  • Environmental Chemistry
  • Statistical and Nonlinear Physics

The main topics of Robert Colman's work include:

  • Climate variability and models
  • Atmospheric and Environmental Gas Dynamics
  • Meteorological Phenomena and Simulations
  • Geology and Paleoclimatology Research
  • Marine and coastal ecosystems
  • Methane Hydrates and Related Phenomena
  • Advanced Thermodynamics and Statistical Mechanics

Frequent co-authors include Sergei Soldatenko, Sugata Narsey, Josephine R. Brown, Brian J. Soden, and François Delage, indicating collaboration across interdisciplinary teams.

Robert Colman has published in several high-impact venues, including:

  • Reviews of Modern Physics
  • Geophysical Research Letters
  • Climate Dynamics
  • Journal of Climate
  • Tellus A Dynamic Meteorology and Oceanography

Selected recent papers by Robert Colman include:

  • Water vapor and lapse rate feedbacks in the climate system (2021, Reviews of Modern Physics)
  • Understanding the links between climate feedbacks, variability and change using a two-layer energy balance model (2020, Climate Dynamics)

Other significant publications related to atmospheric and climate studies from their research group or collaborators include:

  • Climate Change Projections for the Australian Monsoon From CMIP6 Models (2020, Geophysical Research Letters)
  • A multimodel investigation of atmospheric mechanisms for driving Arctic amplification in warmer climates (2021, Journal of Climate)
  • Power Spectrum Sensitivity Analysis of the Global Mean Surface Temperature Fluctuations Simulated in a Two-Box Stochastic Energy Balance Model (2022, Tellus A Dynamic Meteorology and Oceanography)

Best Publications

  • How Well Do We Understand and Evaluate Climate Change Feedback Processes

    Sandrine Bony;Robert Colman;Vladimir M. Kattsov;Richard P. Allan

  • A comparison of climate feedbacks in general circulation models

    R. Colman

  • STOIC: a study of coupled model climatology and variability in tropical ocean regions

    M. K. Davey;M. Huddleston;K. R. Sperber;P. Braconnot

  • On the contribution of local feedback mechanisms to the range of climate sensitivity in two GCM ensembles

    Mark J. Webb;C. A. Senior;D. M.H. Sexton;W. J. Ingram

  • Cloud feedback in atmospheric general circulation models: An update

    R. D. Cess;M. H. Zhang;W. J. Ingram;G. L. Potter

  • The Predictability of Interdecadal Changes in ENSO Activity and ENSO Teleconnections

    Scott Power;Malcolm Haylock;Rob Colman;Xiangdong Wang

  • Interpretation of snow-climate feedback as produced by 17 general circulation models.

    R. D. Cess;G. L. Potter;M. H. Zhang;J. P. Blanchet

  • A study of general circulation model climate feedbacks determined from perturbed sea surface temperature experiments

    R. A. Colman;B. J. McAvaney

  • Uncertainties in carbon dioxide radiative forcing in atmospheric general circulation models.

    R. D. Cess;M.-H. Zhang;G. L. Potter;H. W. Barker

  • Consensus on Twenty-First-Century Rainfall Projections in Climate Models More Widespread than Previously Thought

    Scott B. Power;François Delage;Robert Colman;Aurel Moise

  • Multi-year predictability in a coupled general circulation model

    Scott Power;Rob Colman

  • Climate feedbacks under a very broad range of forcing

    Robert Colman;Bryant McAvaney

  • The physical science behind climate change.

    William Collins;Robert Colman;James Haywood;Martin R. Manning

  • On tropospheric adjustment to forcing and climate feedbacks

    R. A. Colman;B. J. McAvaney

  • Analysis of snow feedbacks in 14 general circulation models

    D. A. Randall;R. D. Cess;J. P. Blanchet;S. Chalita

  • The South Pacific Convergence Zone in CMIP5 simulations of historical and future climate

    Josephine R. Brown;Aurel F. Moise;Robert A. Colman

  • Evaluation of the South Pacific Convergence Zone in IPCC AR4 Climate Model Simulations of the Twentieth Century

    Josephine R. Brown;Scott B. Power;Francois P. Delage;Robert A. Colman

  • Cloud-radiative effects on implied oceanic energy transports as simulated by Atmospheric General Circulation Models

    P. J. Gleckler;D. A. Randall;G. Boer;R. Colman

  • Water vapor and lapse rate feedbacks in the climate system

    Robert Colman;Brian J. Soden

  • Does Soil Moisture Influence Climate Variability and Predictability over Australia

    B. Timbal;S. Power;R. Colman;J. Viviand

  • On the vertical extent of atmospheric feedbacks

    R. A. Colman

Frequent Co-Authors

Scott B. Power
Scott B. Power Bureau of Meteorology
David A. Randall
David A. Randall Colorado State University
William Ingram
William Ingram University of Oxford
Karl E. Taylor
Karl E. Taylor Lawrence Livermore National Laboratory
Erich Roeckner
Erich Roeckner Max Planck Society
H. Le Treut
H. Le Treut Centre national de la recherche scientifique, CNRS
Sandrine Bony
Sandrine Bony Université Paris Cité
Robert D. Cess
Robert D. Cess Stony Brook University
Brian J. Soden
Brian J. Soden University of Miami
Minghua Zhang
Minghua Zhang Stony Brook University

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