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Environmental Sciences

D-Index
33
Citations
8402
World Ranking
9507
National Ranking
3405

Overview

Robert E. Tuleya is affiliated with Old Dominion University in the United States. Their research primarily focuses on Earth and Planetary Sciences, with particular expertise in Atmospheric Science, Geophysics, and Global and Planetary Change. The scientist's work often intersects with the study of meteorological phenomena and climate variability.

The main research topics covered by Tuleya include Tropical and Extratropical Cyclones Research, Meteorological Phenomena and Simulations, Earthquake Detection and Analysis, and Climate Variability and Models. Their contributions within these areas reflect an emphasis on understanding complex atmospheric systems and related phenomena.

Tuleya's publication record shows contributions to several key venues in climate and atmospheric sciences. Notable publication venues include Climatic Change and Zenodo (CERN European Organization for Nuclear Research), where multiple data-related works have been deposited.

  • Dynamical downscaling projections of late twenty-first-century U.S. landfalling hurricane activity, 2022, Climatic Change
  • GFDL hurricane model track data associated with "Dynamical downscaling projections of late 21st century U.S. landfalling hurricane activity", 2022, Zenodo (CERN European Organization for Nuclear Research)
  • GFDL hurricane model track data associated with "Dynamical downscaling projections of late 21st century U.S. landfalling hurricane activity", 2022, Zenodo (CERN European Organization for Nuclear Research)

Frequent collaborators in their work include Thomas R. Knutson and Morris A. Bender, each associated with multiple joint publications. Other coauthors include Joe Sirutis, Ben Schenkel, and J. Sirutis, indicating collaboration across various aspects of atmospheric and climate research.

  • Thomas R. Knutson
  • Morris A. Bender
  • Joe Sirutis
  • Ben Schenkel
  • J. Sirutis

Best Publications

  • Modeled Impact of Anthropogenic Warming on the Frequency of Intense Atlantic Hurricanes

    Morris A. Bender;Thomas R. Knutson;Robert E. Tuleya;Joseph J. Sirutis

  • Impact of CO2-Induced Warming on Simulated Hurricane Intensity and Precipitation: Sensitivity to the Choice of Climate Model and Convective Parameterization

    Thomas R. Knutson;Robert E. Tuleya

  • Global Projections of Intense Tropical Cyclone Activity for the Late Twenty-First Century from Dynamical Downscaling of CMIP5/RCP4.5 Scenarios

    Thomas R. Knutson;Joseph J. Sirutis;Ming Zhao;Robert E. Tuleya

  • Improvements in the GFDL Hurricane Prediction System

    Yoshio Kurihara;Morris A. Bender;Robert E. Tuleya;Rebecca J. Ross

  • Simulated Increase of Hurricane Intensities in a CO2-Warmed Climate

    Thomas R. Knutson;Robert E. Tuleya;Yoshio Kurihara

  • Dynamical Downscaling Projections of Twenty-First-Century Atlantic Hurricane Activity: CMIP3 and CMIP5 Model-Based Scenarios

    Thomas R. Knutson;Joseph J. Sirutis;Gabriel A. Vecchi;Stephen Garner

  • The Operational GFDL Coupled Hurricane–Ocean Prediction System and a Summary of Its Performance

    Morris A. Bender;Isaac Ginis;Robert Tuleya;Biju Thomas

  • Simulation of the Recent Multidecadal Increase of Atlantic Hurricane Activity Using an 18-km-Grid Regional Model

    Thomas R. Knutson;Joseph J. Sirutis;Stephen T. Garner;Isaac M. Held

  • The GFDL Hurricane Prediction System and Its Performance in the 1995 Hurricane Season

    Yoshio Kurihara;Robert E. Tuleya;Morris A. Bender

  • Structure of a Tropical Cyclone Developed in a Three-Dimensional Numerical Simulation Model

    Yoshio Kurihara;Robert E. Tuleya

  • A Numerical Study of the Effect of Island Terrain on Tropical Cyclones

    Morris A. Bender;Robert E. Tuleya;Yoshio Kurihara

  • Improvements in Tropical Cyclone Track and Intensity Forecasts Using the GFDL Initialization System

    Morris A. Bender;Rebecca J. Ross;Robert E. Tuleya;Yoshio Kurihara

  • Increased hurricane intensities with CO2-induced warming as simulated using the GFDL hurricane prediction system

    T. R. Knutson;R. E. Tuleya

  • The Impact of Omega Dropwindsondes on Operational Hurricane Track Forecast Models

    Robert W. Burpee;James L. Franklin;Stephen J. Lord;Robert E. Tuleya

  • Evaluation of GFDL and Simple Statistical Model Rainfall Forecasts for U.S. Landfalling Tropical Storms

    Robert E. Tuleya;Mark DeMaria;Robert J. Kuligowski

  • Tropical Storm Development and Decay: Sensitivity to Surface Boundary Conditions

    Robert E. Tuleya

  • Impact of CO2-Induced Warming on Hurricane Intensities as Simulated in a Hurricane Model with Ocean Coupling

    Thomas R. Knutson;Robert E. Tuleya;Weixing Shen;Isaac Ginis

  • A Numerical Simulation of the Landfall of Tropical Cyclones.

    Robert E. Tuleya;Yoshio Kurihara

  • A Sensitivity Study of the Thermodynamic Environment on GFDL Model Hurricane Intensity: Implications for Global Warming

    Weixing Shen;Robert E. Tuleya;Isaac Ginis

  • A Numerical Study on the Effects of Environmental Flow on Tropical Storm Genesis

    Robert E. Tuleya;Yoshio Kurihara

Frequent Co-Authors

Thomas R. Knutson
Thomas R. Knutson Geophysical Fluid Dynamics Laboratory
Ming Zhao
Ming Zhao Geophysical Fluid Dynamics Laboratory
Isaac M. Held
Isaac M. Held Princeton University
Gabriel A. Vecchi
Gabriel A. Vecchi Princeton University
Gabriele Villarini
Gabriele Villarini Princeton University
Fanrong Zeng
Fanrong Zeng Geophysical Fluid Dynamics Laboratory
Andrew T. Wittenberg
Andrew T. Wittenberg Geophysical Fluid Dynamics Laboratory
Sim D. Aberson
Sim D. Aberson National Oceanic and Atmospheric Administration
Brian J. Soden
Brian J. Soden University of Miami
Mark DeMaria
Mark DeMaria Colorado State University

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