Arid
DOI10.1029/95JD00017
MULTIYEAR STRATOSPHERIC AEROSOL AND GAS EXPERIMENT-II MEASUREMENTS OF UPPER-TROPOSPHERIC AEROSOL CHARACTERISTICS
KENT, GS; WANG, PH; MCCORMICK, MP; SKEENS, KM
通讯作者KENT, GS
来源期刊JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
ISSN2169-897X
出版年1995
卷号100期号:D7页码:13875-13899
英文摘要

Measurements of aerosol extinction at wavelengths of 0.525 and 1.02 mu m, made by the Stratospheric Aerosol and Gas Experiment (SAGE) II solar occultation satellite experiment, have been used to Study the global-scale characteristics of the upper tropospheric aerosol. Extinction measurements, in which only aerosols occurred along the optical path, have been separated from those that included high-altitude cloud by examining the wavelength variation of the extinction. Data for the time period October 1984 to May 1991 show that the two main influences on the upper tropospheric aerosol were seasonal lifting of material from below and downward transfer of volcanic aerosol from the stratosphere. Maximum lifting of surface material occurs in local spring in both hemispheres and is observed at all latitudes between 20 degrees N and 80 degrees N and 20 degrees S and 60 degrees S; the data also show a strong hemispheric asymmetry with more aerosol in the northern hemisphere. Downward transfer of volcanic aerosol is particularly observed poleward of 40 degrees latitude; where a substantial enhancement of material occurs down to altitudes 2-3 km below the tropopause. By comparing tropospheric aerosol concentrations at different times during the period of observation, it has been possible to differentiate the effects of volcanic aerosols from those of the background, or baseline, aerosols. A simple model, based on the ratio of the extinctions at the two measurement wavelengths, has bean used to calculate the aerosol mass density and effective radius. It was found that in 1984-1985, approximately 15% of the Volcanic aerosol still present: from the eruption of El Chichon in 1982, resided in the upper troposphere. Particle sizes for the volcanic aerosol in the lower stratosphere and upper troposphere were of the order of 0.5 mu m, while those for the baseline aerosol were about 0.15 mu m. Slightly larger aerosol sizes, of the order of 0.25 mu m, were observed at altitudes 6-8 km during the springtime enhancements. The low-latitude aerosol enhancements in both hemispheres appear to have the characteristics of material derived from arid surface regions, while the higher-latitude aerosol in the northern hemisphere appears more likely to be derived from anthropogenic sources.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:A1995RK57000008
WOS关键词EQUATORIAL NORTH-ATLANTIC ; EL-CHICHON ; SIZE DISTRIBUTION ; VERTICAL PROFILES ; SAGE ; SATELLITE ; PINATUBO ; CLOUD ; VALIDATION ; TRANSPORT
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/131635
作者单位(1)NASA, LANGLEY RES CTR, DIV ATMOSPHER SCI, HAMPTON, VA 23665 USA
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KENT, GS,WANG, PH,MCCORMICK, MP,et al. MULTIYEAR STRATOSPHERIC AEROSOL AND GAS EXPERIMENT-II MEASUREMENTS OF UPPER-TROPOSPHERIC AEROSOL CHARACTERISTICS[J],1995,100(D7):13875-13899.
APA KENT, GS,WANG, PH,MCCORMICK, MP,&SKEENS, KM.(1995).MULTIYEAR STRATOSPHERIC AEROSOL AND GAS EXPERIMENT-II MEASUREMENTS OF UPPER-TROPOSPHERIC AEROSOL CHARACTERISTICS.JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,100(D7),13875-13899.
MLA KENT, GS,et al."MULTIYEAR STRATOSPHERIC AEROSOL AND GAS EXPERIMENT-II MEASUREMENTS OF UPPER-TROPOSPHERIC AEROSOL CHARACTERISTICS".JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES 100.D7(1995):13875-13899.
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