Tropospheric water vapor, convection, and climate

Recent progress is reviewed in the understanding of convective interaction with water vapor and changes associated with water vapor in warmer climates. Progress includes new observing techniques (including isotopic methods) that are helping to illuminate moisture-convection interaction, better observed humidity trends, new modeling approaches, and clearer expectations as to the hydrological consequences of increased specific humidity in a warmer climate. A theory appears to be in place to predict humidity in the free troposphere if winds are known at large scales, providing a crucial link between small-scale behavior and large-scale mass and energy constraints. This, along with observations, supports the anticipated water vapor feedback on climate, though key uncertainties remain connected to atmospheric dynamics and the hydrological consequences of a moister atmosphere. More work is called for to understand how circulations on all scales are governed and what role water vapor plays. Suggestions are given for future research.

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Copyright 2010 American Geophysical Union.


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Author Sherwood, Steve
Roca, Remi
Weckwerth, Tammy
Andronova, Natalia
Publisher UCAR/NCAR - Library
Publication Date 2010-04-13T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T18:26:21.780715
Metadata Record Identifier edu.ucar.opensky::articles:10468
Metadata Language eng; USA
Suggested Citation Sherwood, Steve, Roca, Remi, Weckwerth, Tammy, Andronova, Natalia. (2010). Tropospheric water vapor, convection, and climate. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7j966tq. Accessed 20 June 2025.

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