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Comments on "global and regional entropy production by radiation Estimated from satellite observations"
File | Description | Size | Format | |
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GibbinsHaigh_JClim2021.pdf | Published version | 795.53 kB | Adobe PDF | View/Open |
Title: | Comments on "global and regional entropy production by radiation Estimated from satellite observations" |
Authors: | Gibbins, G Haigh, JD |
Item Type: | Journal Article |
Abstract: | A recent paper by Kato and Rose reports a negative correlation between the annual mean entropy production rate of the climate and the absorption of solar radiation in the CERES SYN1deg dataset, using the simplifying assumption that the system is steady in time. It is shown here, however, that when the nonsteady interannual storage of entropy is accounted for, the dataset instead implies a positive correlation; that is, global entropy production rates increase with solar absorption. Furthermore, this increase is consistent with the response demonstrated by an energy balance model and a radiative–convective model. To motivate this updated analysis, a detailed discussion of the conceptual relationship between entropy production, entropy storage, and entropy flows is provided. The storage-corrected estimate for the mean global rate of entropy production in the CERES dataset from all irreversible transfer processes is 81.9 mW m−2 K−1 and from only nonradiative processes is 55.2 mW m−2 K−1 (observations from March 2000 to February 2018). |
Issue Date: | 1-May-2021 |
Date of Acceptance: | 1-Mar-2021 |
URI: | http://hdl.handle.net/10044/1/89148 |
DOI: | 10.1175/JCLI-D-20-0685.1 |
ISSN: | 0894-8755 |
Publisher: | American Meteorological Society |
Start Page: | 3721 |
End Page: | 3728 |
Journal / Book Title: | Journal of Climate |
Volume: | 34 |
Issue: | 9 |
Copyright Statement: | © 2021 American Meteorological Society. For information regarding reuse of this content and general copyright information, consult the AMS Copyright Policy (www.ametsoc.org/PUBSReuseLicenses). |
Keywords: | Science & Technology Physical Sciences Meteorology & Atmospheric Sciences Albedo Budgets Climatology Entropy Satellite observations Interannual variability ENERGY SYSTEM CERES HEAT-ENGINE CLIMATE CLOUDS Science & Technology Physical Sciences Meteorology & Atmospheric Sciences Albedo Budgets Climatology Entropy Satellite observations Interannual variability ENERGY SYSTEM CERES HEAT-ENGINE CLIMATE CLOUDS 0401 Atmospheric Sciences 0405 Oceanography 0909 Geomatic Engineering Meteorology & Atmospheric Sciences |
Publication Status: | Published |
Online Publication Date: | 2021-03-31 |
Appears in Collections: | Space and Atmospheric Physics Physics Grantham Institute for Climate Change |