R
R. Healy
Researcher at Woods Hole Oceanographic Institution
Publications - 27
Citations - 2649
R. Healy is an academic researcher from Woods Hole Oceanographic Institution. The author has contributed to research in topics: Climate model & Climate change. The author has an hindex of 22, co-authored 27 publications receiving 2431 citations. Previous affiliations of R. Healy include Goddard Institute for Space Studies & Science Applications International Corporation.
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Journal ArticleDOI
Configuration and Assessment of the GISS ModelE2 Contributions to the CMIP5 Archive
Gavin A. Schmidt,Max Kelley,Larissa Nazarenko,Reto Ruedy,Gary L. Russell,Igor Aleinov,Mike Bauer,Mike Bauer,Susanne E. Bauer,Maharaj K. Bhat,Rainer Bleck,Rainer Bleck,Vittorio Canuto,Yonghua Chen,Y. Cheng,Thomas Clune,Anthony D. Del Genio,Rosalinda de Fainchtein,Greg Faluvegi,James Hansen,R. Healy,Nancy Y. Kiang,Dorothy Koch,Andrew A. Lacis,Allegra N. LeGrande,Jean Lerner,Ken K. Lo,Elaine Matthews,Surabi Menon,Ron L. Miller,Valdar Oinas,Amidu Oloso,Jan P. Perlwitz,Jan P. Perlwitz,Michael J. Puma,William M. Putman,David Rind,Anastasia Romanou,Anastasia Romanou,Makiko Sato,Drew Shindell,Shan Sun,Rahman A. Syed,N. Tausnev,Kostas Tsigaridis,Nadine Unger,Apostolos Voulgarakis,Mao-Sung Yao,Jinlun Zhang +48 more
TL;DR: In this article, the authors present a description of the ModelE2 version of the GISS General Circulation Model (GCM) and the configurations used in the simulations performed for the Coupled Model Intercomparison Project Phase 5 (CMIP5).
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Modeling δ18O in precipitation over the tropical Americas: 1. Interannual variability and climatic controls
TL;DR: In this paper, two atmospheric general circulation models, the ECHAM-4 and the GISS II models, were used to analyze the interannual variability of δ18O in precipitation over the tropical Americas.
Journal ArticleDOI
Hypothesized climate forcing time series for the last 500 years
A. Robertson,Jonathan T. Overpeck,D. Rind,Ellen Mosley-Thompson,Gregory A. Zielinski,Judith Lean,Dorothy Koch,Joyce E. Penner,Ina Tegen,R. Healy,R. Healy +10 more
TL;DR: A new compilation of annually resolved time series of atmospheric trace gas concentrations, solar irradiance, tropospheric aerosol optical depth, and stratospheric (volcanic) optical depth is presented for use in climate modeling studies of the period 1500 to 1999 A.D..
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Influence of ocean heat transport on the climate of the Last Glacial Maximum
TL;DR: In this paper, a series of climate simulations using an atmospheric general circulation model showed that maintaining ocean heat transport at close to present-day values, but with otherwise glacial boundary conditions, leads to an enhanced cooling, particularly in the tropics.
Journal ArticleDOI
CMIP5 historical simulations (1850–2012) with GISS ModelE2
Ron L. Miller,Ron L. Miller,Gavin A. Schmidt,Larissa Nazarenko,N. Tausnev,Susanne E. Bauer,Anthony D. DelGenio,Max Kelley,Ken K. Lo,Reto Ruedy,Drew Shindell,Igor Aleinov,Mike Bauer,Mike Bauer,Rainer Bleck,Rainer Bleck,Vittorio Canuto,Yonghua Chen,Y. Cheng,Thomas Clune,Thomas Clune,Greg Faluvegi,James Hansen,R. Healy,Nancy Y. Kiang,Dorothy Koch,Andrew A. Lacis,Allegra N. LeGrande,Jean Lerner,Surabi Menon,Valdar Oinas,Carlos Pérez García-Pando,Carlos Pérez García-Pando,Jan P. Perlwitz,Jan P. Perlwitz,Michael J. Puma,David Rind,Anastasia Romanou,Anastasia Romanou,Gary L. Russell,Makiko Sato,Shan Sun,Kostas Tsigaridis,Nadine Unger,Nadine Unger,Apostolos Voulgarakis,Mao-Sung Yao,Jinlun Zhang +47 more
TL;DR: In this paper, six versions of the NASA Goddard Institute for Space Studies ModelE2 Earth System Model are compared to observations of climate change during the CMIP5 extended historical period (1850-2012).