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Comparison of land–ocean warming ratios in updated observed records and CMIP5 climate models

Bibliographic Data

ID15545009
AuthorsC J Wallace (0000-0002-4684-8248, University of East Anglia, corresponding author), Manoj Joshi (0000-0001-6031-8924, University of East Anglia)
Year2018
Volume13
Issue11
Pages114011-114011
Publication date2018-09-26
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/aae46f
OpenAlexW2894342073
LanguageEN
Citations received2
References cited26

1] A well-known feature of observed and simulated climate is enhanced land surface warming compared to the ocean. This difference in warming, frequently expressed as a ratio, is often contrasted between the observed record and climate model output as both an evaluation metric for climate models and as a global index used for climate change detection and attribution. Latest simulated estimates of the ratio use full global coverage and marine surface air temperature, making genuine comparisons with observations difficult, since global observed datasets typically use sea surface temperatures and have limited spatial coverage. We show that re-calculating simulated ratios when using sea surface temperatures and limited spatial coverage (to resemble the observations) raises the ratio by ~0.25. We also update the observed ratio using latest observations and we find a close convergence of observed and simulated ratios towards ~1.6 for the 2000-2016 period accompanied by a decline in temporal variability. If we revise estimates of the likely range of ratios from climate models to account for the above factors, then our new observed ratio estimate is slightly less than the median of the GCM ensemble range (1.54 to 1.81)

Atmospheric sciences · Climate change · Climate model · Climatology · GCM transcription factors · General Circulation Model · Global warming · Range (aeronautics · Sea surface temperature · Atmospheric and Environmental Gas Dynamics · Climate variability and models · Environmental Science · Meteorological Phenomena and Simulations · Geology · Oceanography

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Unique citing works2
Citations per year0,5
Citation span2022 - 2023 (2)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 2
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