GSTDTAP  > 地球科学
DOI10.5194/acp-18-4377-2018
Determining the infrared radiative effects of Saharan dust: a radiative transfer modelling study based on vertically resolved measurements at Lampedusa
Meloni, Daniela1; di Sarra, Alcide1; Brogniez, Gerard2; Denjean, Cyrielle3,4,5; De Silvestri, Lorenzo1; Di Iorio, Tatiana1; Formenti, Paola3,4; Gomez-Amo, Jose L.6; Grobner, Julian7; Kouremeti, Natalia7; Liuzzi, Giuliano8,9; Mallet, Marc10; Pace, Giandomenico1; Sferlazzo, Damiano M.11
2018-03-29
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2018
卷号18期号:6页码:4377-4401
文章类型Article
语种英语
国家Italy; France; Spain; Switzerland; USA
英文摘要

Detailed measurements of radiation, atmospheric and aerosol properties were carried out in summer 2013 during the Aerosol Direct Radiative Impact on the regional climate in the MEDiterranean region (ADRIMED) campaign in the framework of the Chemistry-Aerosol Mediterranean Experiment (ChArMEx) experiment. This study focusses on the characterization of infrared (IR) optical properties and direct radiative effects of mineral dust, based on three vertical profiles of atmospheric and aerosol properties and IR broadb-and and narrowband radiation from airborne measurements, made in conjunction with radiosonde and ground-based observations at Lampedusa, in the central Mediterranean. Satellite IR spectra from the Infrared Atmospheric Sounder Interferometer (IASI) are also included in the analysis. The atmospheric and aerosol properties are used as input to a radiative transfer model, and various IR radiation parameters (upward and downward irradiance, nadir and zenith brightness temperature at different altitudes) are calculated and compared with observations. The model calculations are made for different sets of dust particle size distribution (PSD) and refractive index (RI), derived from observations and from the literature. The main results of the analysis are that the IR dust radiative forcing is non-negligible and strongly depends on PSD and RI. When calculations are made using the in situ measured size distribution, it is possible to identify the refractive index that produces the best match with observed IR irradiances and brightness temperatures (BTs). The most appropriate refractive indices correspond to those determined from independent measurements of mineral dust aerosols from the source regions (Tunisia, Algeria, Morocco) of dust transported over Lampedusa, suggesting that differences in the source properties should be taken into account. With the in situ size distribution and the most appropriate refractive index the estimated dust IR radiative forcing efficiency is +/- 23.7 W m(-2) at the surface, -7.9 W m(-2) within the atmosphere, and C 15.8Wm 2 at the top of the atmosphere. The use of column-integrated dust PSD from AERONET may also produce a good agreement with measured irradiances and BTs, but with significantly different values of the RI. This implies large differences, up to a factor of 2.5 at surface, in the estimated dust radiative forcing, and in the IR heating rate. This study shows that spectrally resolved measurements of BTs are important to better constrain the dust IR optical properties, and to obtain a reliable estimate of its radiative effects. Efforts should be directed at obtaining an improved description of the dust size distribution and its vertical distribution, as well as at including regionally resolved optical properties.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000428819200002
WOS关键词IN-SITU MEASUREMENTS ; ACCURACY MULTIWAVELENGTH RADIOMETER ; DESERT DUST ; OPTICAL-PROPERTIES ; IRRADIANCE MEASUREMENTS ; SATELLITE-OBSERVATIONS ; ATMOSPHERIC TRANSPORT ; EXTINCTION SPECTRA ; REFRACTIVE-INDEXES ; SIZE DISTRIBUTION
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/17263
专题地球科学
作者单位1.ENEA, Lab Observat & Anal Earth & Climate, Via Anguillarese 301, I-00123 Rome, Italy;
2.Univ Lille 1, Lab Opt Atmospher, Villeneuve Dascq, France;
3.Univ Paris Est Creteil, CNRS, UMR 7583, Lab Interuniv Syst Atmospher, Creteil, France;
4.Univ Paris Diderot, Inst Pierre Simon Laplace, Creteil, France;
5.Meteo France, CNRS, UMR 3589, Ctr Natl Rech Meteorol, Toulouse, France;
6.Univ Valencia, Dept Fis Terra & Termodinam, Valencia, Spain;
7.World Radiat Ctr, Phys Meteorol Observ Davos, Dorfstr 33, CH-7260 Davos, Switzerland;
8.NASA, Goddard Space Flight Ctr, Solar Syst Explorat Div, 8800 Greenbelt Rd, Greenbelt, MD 20771 USA;
9.Amer Univ, Dept Phys, 4400 Massachusetts Ave NW, Washington, DC 20016 USA;
10.Meteo France, CNRS, UMR 3589, CNRM, Toulouse, France;
11.ENEA, Lab Observat & Anal Earth & Climate, I-92010 Lampedusa, Contrada Capo G, Italy
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Meloni, Daniela,di Sarra, Alcide,Brogniez, Gerard,et al. Determining the infrared radiative effects of Saharan dust: a radiative transfer modelling study based on vertically resolved measurements at Lampedusa[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2018,18(6):4377-4401.
APA Meloni, Daniela.,di Sarra, Alcide.,Brogniez, Gerard.,Denjean, Cyrielle.,De Silvestri, Lorenzo.,...&Sferlazzo, Damiano M..(2018).Determining the infrared radiative effects of Saharan dust: a radiative transfer modelling study based on vertically resolved measurements at Lampedusa.ATMOSPHERIC CHEMISTRY AND PHYSICS,18(6),4377-4401.
MLA Meloni, Daniela,et al."Determining the infrared radiative effects of Saharan dust: a radiative transfer modelling study based on vertically resolved measurements at Lampedusa".ATMOSPHERIC CHEMISTRY AND PHYSICS 18.6(2018):4377-4401.
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