The simulation of stratospheric water vapor over the Asian summer monsoon in CESM1(WACCM) Models

Previous observational studies have found a persistent maximum in stratospheric water vapor (SWV) in the upper troposphere lower stratosphere (UTLS) confined by the upper-level anticyclone over the Asian summer monsoon region. This study investigates the simulation of SWV in the Community Earth System Model, version 1 with the Whole Atmosphere Community Climate Model as its atmospheric component [CESM1(WACCM)]. CESM1(WACCM) generally tends to simulate a SWV maximum over the central Pacific Ocean, but this bias is largely improved in the high vertical resolution version. The high vertical resolution model with increased vertical layers in the UTLS is found to have a less stratified UTLS over the central Pacific Ocean compared with the low vertical resolution model. It therefore simulates a steepened potential vorticity gradient over the central Pacific Ocean that better closes the upper-level anticyclone and confines the SWV within the enhanced transport barrier.

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Author Wang, Xinyue
Wu, Yutian
Tung, Wen-wen
Richter, Jadwiga H.
Glanville, Anne S.
Tilmes, Simone
Orbe, Clara
Huang, Yi
Xia, Yan
Kinnison, Douglas E.
Publisher UCAR/NCAR - Library
Publication Date 2018-10-27T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T19:19:01.930027
Metadata Record Identifier edu.ucar.opensky::articles:22206
Metadata Language eng; USA
Suggested Citation Wang, Xinyue, Wu, Yutian, Tung, Wen-wen, Richter, Jadwiga H., Glanville, Anne S., Tilmes, Simone, Orbe, Clara, Huang, Yi, Xia, Yan, Kinnison, Douglas E.. (2018). The simulation of stratospheric water vapor over the Asian summer monsoon in CESM1(WACCM) Models. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7057jws. Accessed 29 July 2025.

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