Seasonal and Regional Variability of Stratospheric Dehydration

We analyze output from a domain-filling forward trajectory model in order to better understand the annual cycle of water vapor entering the stratosphere. To do this, we determine the minimum water vapor saturation mixing ratio along each trajectory (the final dehydration point or FDP) and assume th...

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Bibliographic Details
Main Author: Christenberry, Aaron Joseph
Other Authors: Dessler, Andrew
Format: Others
Language:en_US
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/1969.1/ETD-TAMU-2012-05-11087
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-ETD-TAMU-2012-05-110872013-01-08T10:43:45ZSeasonal and Regional Variability of Stratospheric DehydrationChristenberry, Aaron Josephstratospheredehydrationvariabilityseasonal variabilityregional variabilitystratospheric dehydrationWe analyze output from a domain-filling forward trajectory model in order to better understand the annual cycle of water vapor entering the stratosphere. To do this, we determine the minimum water vapor saturation mixing ratio along each trajectory (the final dehydration point or FDP) and assume that the parcel carries that much water vapor into the stratosphere. In the annual average, the tropical Western Pacific, equatorial Africa and South America, and Southeast Asia are found to be the locations of the most frequent FDPs. Looking at individual seasons, we find that FDPs in the tropical western Pacific tend to occur in the summer hemisphere, with FDPs over South America and Africa occurring predominantly during the boreal winter. During boreal summer, a dehydration maximum occurs in the Asian monsoon region. In the annual average, FDP maxima occur at 99 and 84 hPa. Looking at individual seasons, we find that FDPs occur at higher altitudes (centered at 84 hPa) during boreal winter and at lower altitudes (99 hPa) during boreal summer. The annual cycle in FDP altitude combines with the annual cycle in tropical tropopause layer temperatures to generate the observed annual variations in water vapor entering the stratosphere.Dessler, Andrew2012-07-16T15:58:32Z2012-07-16T20:24:48Z2012-07-16T15:58:32Z2012-07-16T20:24:48Z2012-052012-07-16May 2012thesistextapplication/pdfhttp://hdl.handle.net/1969.1/ETD-TAMU-2012-05-11087en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic stratosphere
dehydration
variability
seasonal variability
regional variability
stratospheric dehydration
spellingShingle stratosphere
dehydration
variability
seasonal variability
regional variability
stratospheric dehydration
Christenberry, Aaron Joseph
Seasonal and Regional Variability of Stratospheric Dehydration
description We analyze output from a domain-filling forward trajectory model in order to better understand the annual cycle of water vapor entering the stratosphere. To do this, we determine the minimum water vapor saturation mixing ratio along each trajectory (the final dehydration point or FDP) and assume that the parcel carries that much water vapor into the stratosphere. In the annual average, the tropical Western Pacific, equatorial Africa and South America, and Southeast Asia are found to be the locations of the most frequent FDPs. Looking at individual seasons, we find that FDPs in the tropical western Pacific tend to occur in the summer hemisphere, with FDPs over South America and Africa occurring predominantly during the boreal winter. During boreal summer, a dehydration maximum occurs in the Asian monsoon region. In the annual average, FDP maxima occur at 99 and 84 hPa. Looking at individual seasons, we find that FDPs occur at higher altitudes (centered at 84 hPa) during boreal winter and at lower altitudes (99 hPa) during boreal summer. The annual cycle in FDP altitude combines with the annual cycle in tropical tropopause layer temperatures to generate the observed annual variations in water vapor entering the stratosphere.
author2 Dessler, Andrew
author_facet Dessler, Andrew
Christenberry, Aaron Joseph
author Christenberry, Aaron Joseph
author_sort Christenberry, Aaron Joseph
title Seasonal and Regional Variability of Stratospheric Dehydration
title_short Seasonal and Regional Variability of Stratospheric Dehydration
title_full Seasonal and Regional Variability of Stratospheric Dehydration
title_fullStr Seasonal and Regional Variability of Stratospheric Dehydration
title_full_unstemmed Seasonal and Regional Variability of Stratospheric Dehydration
title_sort seasonal and regional variability of stratospheric dehydration
publishDate 2012
url http://hdl.handle.net/1969.1/ETD-TAMU-2012-05-11087
work_keys_str_mv AT christenberryaaronjoseph seasonalandregionalvariabilityofstratosphericdehydration
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