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RESEARCH PRODUCT
Ultrathin Tropical Tropopause Clouds (UTTCs) : I. Cloud morphology and occurrence
Cornelius SchillerLeopoldo StefanuttiThomas TrautmannJohan StrömG. Di DonfrancescoFrancesco CairoC. M. VolkTh. PeterR. MackenzieMartin WirthV. SantacesariaVladimir YushkovStephan BorrmannValentin MitevJ. BeuermannKevin J. NooneAndreas ThomasHarald FlentjeGuido TociB. P. LuoKenneth S. CarslawV. RudakovV. KhattatovAlberto AdrianiChristoph KiemleP. Mazzinghisubject
[SDU.OCEAN]Sciences of the Universe [physics]/Ocean AtmosphereAtmospheric Science010504 meteorology & atmospheric sciencesIce crystals[SDU.OCEAN] Sciences of the Universe [physics]/Ocean Atmosphere010501 environmental sciencesAtmospheric sciences01 natural scienceslcsh:QC1-999lcsh:ChemistryAtmospherelcsh:QD1-99913. Climate actionClimatologyPhase (matter)Tropical tropopauseMixing ratioddc:550Environmental scienceCirrusTropopauseStratospherelcsh:Physics0105 earth and related environmental sciencesdescription
Abstract. Subvisible cirrus clouds (SVCs) may contribute to dehydration close to the tropical tropopause. The higher and colder SVCs and the larger their ice crystals, the more likely they represent the last efficient point of contact of the gas phase with the ice phase and, hence, the last dehydrating step, before the air enters the stratosphere. The first simultaneous in situ and remote sensing measurements of SVCs were taken during the APE-THESEO campaign in the western Indian ocean in February/March 1999. The observed clouds, termed Ultrathin Tropical Tropopause Clouds (UTTCs), belong to the geometrically and optically thinnest large-scale clouds in the Earth's atmosphere. Individual UTTCs may exist for many hours as an only 200--300 m thick cloud layer just a few hundred meters below the tropical cold point tropopause, covering up to 105 km2. With temperatures as low as 181 K these clouds are prime representatives for defining the water mixing ratio of air entering the lower stratosphere.
year | journal | country | edition | language |
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2003-07-29 |