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Environmental Sciences

D-Index
59
Citations
23775
World Ranking
3012
National Ranking
1178

Overview

Elena Shevliakova is affiliated with Princeton University in the United States. Their research spans multiple areas within environmental and Earth sciences, with an emphasis on climate systems and related processes. The scientist has contributed to both broad and specialized fields, notably developing and analyzing Earth system models and studying interactions between land, atmosphere, and biosphere.

Shevliakova's main fields of study include:

  • Environmental Science
  • Earth and Planetary Sciences

Subfields covered by their work involve:

  • Global and Planetary Change
  • Atmospheric Science
  • Oceanography
  • Water Science and Technology
  • Environmental Chemistry

Main research topics addressed by this scientist are:

  • Climate variability and models
  • Atmospheric and Environmental Gas Dynamics
  • Plant Water Relations and Carbon Dynamics
  • Atmospheric chemistry and aerosols
  • Hydrology and Watershed Management Studies
  • Fire effects on ecosystems
  • Cryospheric studies and observations

Frequent publication venues where Shevliakova's work appears include:

  • Journal of Advances in Modeling Earth Systems
  • Zenodo (CERN European Organization for Nuclear Research)
  • Geoscientific model development
  • Geophysical Research Letters
  • Nature Climate Change

Some recent papers authored or coauthored by Shevliakova are:

  • "Harmonization of global land use change and management for the period 850-2100 (LUH2) for CMIP6," 2020, Geoscientific model development
  • "The GFDL Earth System Model Version 4.1 (GFDL-ESM 4.1): Overall Coupled Model Description and Simulation Characteristics," 2020, Journal of Advances in Modeling Earth Systems
  • "SPEAR: The Next Generation GFDL Modeling System for Seasonal to Multidecadal Prediction and Projection," 2020, Journal of Advances in Modeling Earth Systems
  • "Vegetation feedbacks during drought exacerbate ozone air pollution extremes in Europe," 2020, Nature Climate Change
  • "The GFDL Global Atmospheric Chemistry-Climate Model AM4.1: Model Description and Simulation Characteristics," 2020, Journal of Advances in Modeling Earth Systems

Shevliakova frequently collaborates with a number of scientists, including:

  • Sergey Malyshev
  • Larry W. Horowitz
  • John P. Dunne
  • Paul Ginoux
  • Charles A. Stock

Best Publications

  • GFDL's CM2 global coupled climate models. Part I: Formulation and simulation characteristics

    Thomas L. Delworth;Anthony J. Broccoli;Anthony Rosati;Ronald J. Stouffer

  • Harmonization of land-use scenarios for the period 1500–2100: 600 years of global gridded annual land-use transitions, wood harvest, and resulting secondary lands

    G. C. Hurtt;G. C. Hurtt;L. P. Chini;S. Frolking;R. A. Betts

  • GFDL’s ESM2 Global Coupled Climate–Carbon Earth System Models. Part I: Physical Formulation and Baseline Simulation Characteristics

    John P. Dunne;Jasmin G. John;Alistair J. Adcroft;Stephen M. Griffies

  • Pervasive drought legacies in forest ecosystems and their implications for carbon cycle models

    W. R.L. Anderegg;C. Schwalm;F. Biondi;J. J. Camarero

  • Consistent land- and atmosphere-based U.S. carbon sink estimates.

    S. W. Pacala;G. C. Hurtt;D. Baker;P. Peylin

  • The dynamical core, physical parameterizations, and basic simulation characteristics of the atmospheric component AM3 of the GFDL global coupled model CM3

    Leo J. Donner;Bruce L. Wyman;Richard S. Hemler;Larry W. Horowitz

  • Harmonization of global land use change and management for the period 850–2100 (LUH2) for CMIP6

    George C. Hurtt;Louise Chini;Ritvik Sahajpal;Steve Frolking

  • The GFDL Earth System Model Version 4.1 (GFDL-ESM 4.1): Overall Coupled Model Description and Simulation Characteristics

    J. P. Dunne;L. W. Horowitz;A. J. Adcroft;P. Ginoux

  • The new GFDL global atmosphere and land model AM2-LM2: Evaluation with prescribed SST simulations

    Jeffrey L. Anderson;V. B Alaji;Anthony J. Broccoli;Anthony J. Broccoli;William F. C Ooke

  • GFDL’s ESM2 Global Coupled Climate–Carbon Earth System Models. Part II: Carbon System Formulation and Baseline Simulation Characteristics*

    Unknown

  • The underpinnings of land‐use history: three centuries of global gridded land‐use transitions, wood‐harvest activity, and resulting secondary lands

    George C Hurtt;Steve Frolking;M G Fearon;B Moore

  • Structure and Performance of GFDL's CM4.0 Climate Model

    I. M. Held;H. Guo;A. Adcroft;J. P. Dunne

  • The Land Use Model Intercomparison Project (LUMIP) contribution to CMIP6:rationale and experimental design

    David M. Lawrence;George C. Hurtt;Almut Arneth;Victor Brovkin

  • Microbe-driventurnoverosetsminer al-mediated storage of soil carbon under elevated CO 2

    Benjamin N. Sulman;Benjamin N. Sulman;Richard P. Phillips;A. Christopher Oishi;Elena Shevliakova

  • Carbon cycling under 300 years of land use change: Importance of the secondary vegetation sink

    Elena Shevliakova;Stephen Wilson Pacala;Sergey Malyshev;George C. Hurtt

  • Harmonization of Global Land-Use Change and Management for the Period 850–2100 (LUH2) for CMIP6

    Unknown

  • Changes in soil organic carbon storage predicted by Earth system models during the 21st century

    K. E. O. Todd-Brown;J. T. Randerson;F. Hopkins;V. Arora

  • Projecting the future of the U.S. carbon sink

    G. C. Hurtt;S. W. Pacala;Paul R Moorcroft;J. Caspersen

  • The GFDL Global Atmosphere and Land Model AM4.0/LM4.0: 2. Model Description, Sensitivity Studies, and Tuning Strategies

    M. Zhao;J.-C. Golaz;I. M. Held;H. Guo

  • Twenty-First-Century Compatible CO2 Emissions and Airborne Fraction Simulated by CMIP5 Earth System Models under Four Representative Concentration Pathways

    Chris Jones;Eddy Robertson;Vivek Arora;Pierre Friedlingstein

  • The Impact of Anthropogenic Land Use and Land Cover Change on Regional Climate Extremes

    Kirsten L. Findell;Alexis Berg;Pierre Gentine;John P. Krasting

  • Urban heat island: Aerodynamics or imperviousness?

    Dan Li;Weilin Liao;Angela J. Rigden;Xiaoping Liu

  • How well can CMIP5 simulate precipitation and its controlling processes over tropical South America

    Lei Yin;Rong Fu;Elena Shevliakova;Elena Shevliakova;Robert Earl Dickinson

Frequent Co-Authors

George C. Hurtt
George C. Hurtt University of Maryland, College Park
Stephen W. Pacala
Stephen W. Pacala Princeton University
Sergey Malyshev
Sergey Malyshev Geophysical Fluid Dynamics Laboratory
Steve Frolking
Steve Frolking University of New Hampshire
Louise Chini
Louise Chini University of Maryland, College Park
Paul C.D. Milly
Paul C.D. Milly United States Geological Survey
Kees Klein Goldewijk
Kees Klein Goldewijk Utrecht University
Richard A. Houghton
Richard A. Houghton Woods Hole Research Center
Peter E. Thornton
Peter E. Thornton Oak Ridge National Laboratory
Paul Ginoux
Paul Ginoux Geophysical Fluid Dynamics Laboratory

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