GSTDTAP  > 地球科学
DOI10.5194/acp-19-6459-2019
Ice injected into the tropopause by deep convection - Part 1: In the austral convective tropics
Dion, Iris-Amata1; Ricaud, Philippe1; Haynes, Peter2; Carminati, Fabien3; Dauhut, Thibaut4
2019-05-16
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2019
卷号19期号:9页码:6459-6479
文章类型Article
语种英语
国家France; England
英文摘要

The contribution of deep convection to the amount of water vapour and ice in the tropical tropopause layer (TTL) from the tropical upper troposphere (UT; around 146 hPa) to the tropopause level (TL; around 100 hPa) is investigated. Ice water content (IWC) and water vapour (WV) measured in the UT and the TL by the Microwave Limb Sounder (MLS; Version 4.2) are compared to the precipitation (Prec) measured by the Tropical Rainfall Measurement Mission (TRMM; Version 007). The two datasets, gridded within 2 degrees x 2 degrees horizontal bins, have been analysed during the austral convective season, December, January, and February (DJF), from 2004 to 2017. MLS observations are performed at 01:30 and 13:30 local solar time, whilst the Prec dataset is constructed with a time resolution of 1 h. The new contribution of this study is to provide a much more detailed picture of the diurnal variation of ice than is provided by the very limited (two per day) MLS observations. Firstly, we show that IWC represents 70 % and 50 % of the total water in the tropical UT and TL, respectively, and that Prec is spatially highly correlated with IWC in the UT (Pearson's linear coefficient R = 0.7). We propose a method that uses Prec as a proxy for deep convection bringing ice up to the UT and TL during the growing stage of convection, in order to estimate the amount of ice injected into the UT and the TL, respectively. We validate the method using ice measurements from the Superconducting Submillimeter-Wave Limb-Emission Sounder (SMILES) during the period DJF 2009-2010. Next, the diurnal cycle of injection of IWC into the UT and the TL by deep convection is calculated by the difference between the maximum and the minimum in the estimated diurnal cycle of IWC in these layers and over selected convective zones. Six tropical highly convective zones have been chosen: South America, South Africa, Pacific Ocean, Indian Ocean, and the Maritime Continent region, split into land (MariCont-L) and ocean (MariCont-O). IWC injection is found to be 2.73 and 0.41 mg m(-3) over tropical land in the UT and TL, respectively, and 0.60 and 0.13 mg m(-3) over tropical ocean in the UT and TL, respectively. The MariCont-L region has the greatest ice injection in both the UT and IL (3.34 and 0.42-0.56 mg m(-3), respectively). The MariCont-O region has less ice injection than MariCont-L (0.91 mg m(-3) in the UT and 0.16-0.34 mg m(-3) in TL) but has the highest diurnal minimum value of IWC in the TL (0.34-0.37 mg m(-3)) among all oceanic zones.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000468193700003
WOS关键词STRATOSPHERIC WATER-VAPOR ; UPPER TROPOSPHERE ; DIURNAL-VARIATION ; LAND CONVECTION ; CIRRUS CLOUDS ; CYCLE ; IMPACT ; VARIABILITY ; CLIMATOLOGY ; DEHYDRATION
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/183233
专题地球科学
作者单位1.Meteo France CNRS, CRNM, F-31057 Toulouse, France;
2.Univ Cambridge, DAMTP, Cambridge CB3 0WA, England;
3.Met Off, Exeter EX1 3PB, Devon, England;
4.Univ Toulouse, CNRS, UPS, Lab Aerol, F-31400 Toulouse, France
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Dion, Iris-Amata,Ricaud, Philippe,Haynes, Peter,et al. Ice injected into the tropopause by deep convection - Part 1: In the austral convective tropics[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2019,19(9):6459-6479.
APA Dion, Iris-Amata,Ricaud, Philippe,Haynes, Peter,Carminati, Fabien,&Dauhut, Thibaut.(2019).Ice injected into the tropopause by deep convection - Part 1: In the austral convective tropics.ATMOSPHERIC CHEMISTRY AND PHYSICS,19(9),6459-6479.
MLA Dion, Iris-Amata,et al."Ice injected into the tropopause by deep convection - Part 1: In the austral convective tropics".ATMOSPHERIC CHEMISTRY AND PHYSICS 19.9(2019):6459-6479.
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