Comparison of MLS with SOWER observations Masato Shiotani 1, Fumio Hasebe 2, Masatomo Fujiwara 2,...
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Transcript of Comparison of MLS with SOWER observations Masato Shiotani 1, Fumio Hasebe 2, Masatomo Fujiwara 2,...
![Page 1: Comparison of MLS with SOWER observations Masato Shiotani 1, Fumio Hasebe 2, Masatomo Fujiwara 2, Noriyuki Nishi 3, Holger Voemel 4, and Samuel Oltmans.](https://reader035.fdocuments.in/reader035/viewer/2022070415/5697bfe31a28abf838cb4d3e/html5/thumbnails/1.jpg)
Comparison of MLS with SOWER observations
Masato Shiotani1, Fumio Hasebe2, Masatomo Fujiwara2, Noriyuki Nishi3, Holger Voemel4, and Samuel Oltmans4
1Research Institute for Sustainable Humanosphere, Kyoto University2Graduate School of Environmental Earth Science, Hokkaido University
3Department of Earth and Planetary Sciences, Kyoto University4National Oceanic and Atmospheric Administration
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SOWER/PacificSoundings of Ozone and Water in the Equatorial
Region/Pacific Mission (SOWER/Pacific)
Shoyo-maruMirai
Filling the gap of data sparse area such as in the equatorial Pacific Understanding the climatology and variability (STE: Stratosphere-
Troposphere Exchange; TTL: Tropical Tropopause Layer) Balloon-borne ozone and water vapor observations in collaboration
with NOAA/CMDL Tropospheric chemistry, Satellite validation ...
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SOWER observation toolsWater vapor: i) Snow White: Swiss-made commercial chilled-mirror
hygrometer ii) CU-CFH: chilled-mirror hygrometer developed at NOAAOzone: Electrochemical concentration cell (ECC) ozonesonde
(Fujiwara et al., JTECH, 2003; Voemel et al., JTECH, 2003.)
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SOWER Campaign in 2004 winter
Tarawa - PTU, Ozone, Snow White (20 launches) Biak - PTU, Ozone, Snow White (3 launches) Bandung – PTU, Ozone, CU-CFH (4 launches) Mirai - PTU + Wind, Ozone, Snow White (15 launches) Hanoi - PTU, Ozone, Snow White (8 launches)
- Performing comprehensive observation campaign to examine the dehydration process in the tropical tropopause layer (TTL) in the western and central Pacific- A trial for a trajectory based “match” method which has been used for the estimation of ozone destruction in the polar winter
![Page 5: Comparison of MLS with SOWER observations Masato Shiotani 1, Fumio Hasebe 2, Masatomo Fujiwara 2, Noriyuki Nishi 3, Holger Voemel 4, and Samuel Oltmans.](https://reader035.fdocuments.in/reader035/viewer/2022070415/5697bfe31a28abf838cb4d3e/html5/thumbnails/5.jpg)
Water vapor “match”
Tropopause Layer
Cold core region
Anticyclonic circulation
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Comparison with CU-CFH
1 coincidence out of 4 observations
Coincidence is defined as +/-3 deg & +/- 14 hours (data processed by A. Gettelman)
316
147
215
100
68
46
32
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Comparison at Tarawa (SW)
3 coincidences out of 10 observations
![Page 8: Comparison of MLS with SOWER observations Masato Shiotani 1, Fumio Hasebe 2, Masatomo Fujiwara 2, Noriyuki Nishi 3, Holger Voemel 4, and Samuel Oltmans.](https://reader035.fdocuments.in/reader035/viewer/2022070415/5697bfe31a28abf838cb4d3e/html5/thumbnails/8.jpg)
Comparison at Mirai (SW)
4 coincidences out of 14 observations
![Page 9: Comparison of MLS with SOWER observations Masato Shiotani 1, Fumio Hasebe 2, Masatomo Fujiwara 2, Noriyuki Nishi 3, Holger Voemel 4, and Samuel Oltmans.](https://reader035.fdocuments.in/reader035/viewer/2022070415/5697bfe31a28abf838cb4d3e/html5/thumbnails/9.jpg)
Comparison at Hanoi
2 coincidences out of 8 observations
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All Snow Whites
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Statistical Summary
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Summary
We have performed balloon-born ozone and water vapor observations around the tropical tropopause layer in the central and eastern Pacific region.
Results from the comparisons:– CU-CFH: MLS follows reasonably in the upper
troposphere and in the lower stratosphere.– Snow White: MLS follows wet (Tarawa, Mirai)
and dry (Hanoi) conditions in the upper troposphere reasonably, but has about 15 (147 hPa) - 45 (316hPa) % wet bias.
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Outline of the next campaign
We plan to conduct a campaign observation in Dec. 2005 to Jan. 2006.
Tarawa: ozonesonde + Snow White + CU-CFH + lidarBiak: ozonesonde + Snow White + CU-CFH + lidarKototabang: ozonesonde + Snow White + lidarHa Noi: ozonesonde + Snow White