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Brian J Soden

Biographic Data

ID6543172
NAMEBrian J Soden
GIVEN NAMESBrian J
FAMILY NAMESoden
SIGNATURESODEN B J
AFFILIATIONSUniversity of Miami
ORCID0000-0001-9693-8236
VERIFIEDYes
TOTAL WORKS4
TOTAL CITATIONS0
AUTHOR COUNT4
EDITOR COUNT0
FIRST PUBLICATION YEAR2006
LATEST PUBLICATION YEAR2016
H-INDEX0
  • Will surface winds weaken in response to global warming

    Open Access•Jian Ma, Gregory R Foltz et al.•ARTICLE•Environmental Research Letters•2016

    The surface Walker and tropical tropospheric circulations have been inferred to slow down from historical observations and model projections, yet analysis of large-scale surface wind predictions is lacking. Satellite measurements of surface wind speed indicate strengthening trends averaged over the global and tropical oceans that are supported by precipitation and evaporation changes. Here we use corrected anemometer-based observations to show th…

  • An assessment of methods for computing radiative forcing in climate models

    Open Access•Eui‐Seok Chung, Brian J Soden•ARTICLE•Environmental Research Letters•2015

    Because the radiative forcing is rarely computed separately when performing climate model simulations, several alternative methods have been developed to estimate both the instantaneous (or direct) forcing and the adjusted forcing. The adjusted forcing accounts for the radiative impact arising from the adjustment of climate variables to the instantaneous forcing, independent of any surface warming. Using climate model experiments performed for CM…

  • Current changes in tropical precipitation

    Open Access•Richard P Allan, Brian J Soden et al.•ARTICLE•Environmental Research Letters•2010

    Current changes in tropical precipitation This article has been downloaded from IOPscience. Please scroll down to see the full text article

  • Robust Responses of the Hydrological Cycle to Global Warming

    Isaac M Held, Brian J Soden•ARTICLE•Journal of Climate•2006

    Using the climate change experiments generated for the Fourth Assessment of the Intergovernmental Panel on Climate Change, this study examines some aspects of the changes in the hydrological cycle that are robust across the models. These responses include the decrease in convective mass fluxes, the increase in horizontal moisture transport, the associated enhancement of the pattern of evaporation minus precipitation and its temporal variance, and…

No prominent works on this page.

  • Robust Responses of the Hydrological Cycle to Global Warming

    Isaac M Held, Brian J Soden•ARTICLE•Journal of Climate•2006

    Using the climate change experiments generated for the Fourth Assessment of the Intergovernmental Panel on Climate Change, this study examines some aspects of the changes in the hydrological cycle that are robust across the models. These responses include the decrease in convective mass fluxes, the increase in horizontal moisture transport, the associated enhancement of the pattern of evaporation minus precipitation and its temporal variance, and…

  • Current changes in tropical precipitation

    Open Access•Richard P Allan, Brian J Soden et al.•ARTICLE•Environmental Research Letters•2010

    Current changes in tropical precipitation This article has been downloaded from IOPscience. Please scroll down to see the full text article

  • An assessment of methods for computing radiative forcing in climate models

    Open Access•Eui‐Seok Chung, Brian J Soden•ARTICLE•Environmental Research Letters•2015

    Because the radiative forcing is rarely computed separately when performing climate model simulations, several alternative methods have been developed to estimate both the instantaneous (or direct) forcing and the adjusted forcing. The adjusted forcing accounts for the radiative impact arising from the adjustment of climate variables to the instantaneous forcing, independent of any surface warming. Using climate model experiments performed for CM…

  • Will surface winds weaken in response to global warming

    Open Access•Jian Ma, Gregory R Foltz et al.•ARTICLE•Environmental Research Letters•2016

    The surface Walker and tropical tropospheric circulations have been inferred to slow down from historical observations and model projections, yet analysis of large-scale surface wind predictions is lacking. Satellite measurements of surface wind speed indicate strengthening trends averaged over the global and tropical oceans that are supported by precipitation and evaporation changes. Here we use corrected anemometer-based observations to show th…

Atmospheric sciences (4 works) · Climate change (4 works) · Climate variability and models (4 works) · Climatology (4 works) · Environmental Science (4 works) · Meteorology (4 works) · Climate model (3 works) · Geography (3 works) · Geology (3 works) · Precipitation (3 works)

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