Arid
DOI10.5194/acp-15-12909-2015
Feedbacks of dust and boundary layer meteorology during a dust storm in the eastern Mediterranean
Remy, S.1,2; Benedetti, A.2; Bozzo, A.2; Haiden, T.2; Jones, L.2; Razinger, M.2; Flemming, J.2; Engelen, R. J.2; Peuch, V. H.2; Thepaut, J. N.2
通讯作者Remy, S.
来源期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2015
卷号15期号:22页码:12909-12933
英文摘要

Aerosols affect the atmosphere through direct interaction with short-wave and long-wave radiation and the microphysical properties of clouds. In this paper we report in detail on several mechanisms by which the short-term impact of dust on surface radiative fluxes can affect the dust loading of the atmosphere via modification of boundary-layer meteorology. This in turn affects the aerosol radiative forcing itself. Examples of these feedbacks between dust and boundary layer meteorology were observed during a series of dust storms in the Sahara and the eastern Mediterranean in April 2012. These case studies have been analysed using the Monitoring Atmospheric Composition and Climate - Interim Implementation (MACC-II) system.


The radiative fluxes in the short-wave and long-wave spectra were both significantly affected by the prognostic aerosol-radiation interaction, which in turn impacted the meteorological simulation. Reduced incoming solar radiation below the aerosol layers led to a decrease in maximum surface temperatures and to a more stable thermal stratification of the lower atmosphere. This in turn forced weaker surface wind speeds and eventually smaller dust emissions. Moreover, we also observed a secondary impact of the aerosol radiative forcing, whereby horizontal gradients of surface temperature were increased at the edge of the dust plume, which led to local increases of surface wind speeds due to the thermal wind effect. The differentiated impact of the aerosol layer on surface pressure also contributed to the increase in surface wind speed and dust production in the same area.


Enhanced long-wave radiative fluxes by the dust mass were associated with opposite processes. Less stable thermal stratification at night, brought mainly by higher minimum temperatures at the surface, caused stronger surface winds. At the edge of the dust storm, weaker horizontal temperature and pressure gradients forced lower winds and reduced dust production.


Regarding dust emissions, short-wave radiative forcing had a larger impact than long-wave radiative forcing, corroborating several previous studies. For surface temperature, short-wave and long-wave contribution were close in intensity.


These feedbacks were amplified when using data assimilation to build the aerosol analysis of the MACC-II global system. This led to an improvement in the short-term forecasts of thermal radiative fluxes and surface temperatures.


类型Article
语种英语
国家France ; England
收录类别SCI-E
WOS记录号WOS:000365977100013
WOS关键词LOW-LEVEL JETS ; MINERAL DUST ; RADIATIVE CHARACTERISTICS ; EXPERIMENT SHADE ; C-130 AIRCRAFT ; WEST-AFRICA ; DESERT DUST ; AEROSOLS ; MODEL ; CYCLE
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/186073
作者单位1.Meteorol Dynam Lab, Paris, France;
2.European Ctr Medium Range Weather Forecasts, Reading RG2 9AX, Berks, England
推荐引用方式
GB/T 7714
Remy, S.,Benedetti, A.,Bozzo, A.,et al. Feedbacks of dust and boundary layer meteorology during a dust storm in the eastern Mediterranean[J],2015,15(22):12909-12933.
APA Remy, S..,Benedetti, A..,Bozzo, A..,Haiden, T..,Jones, L..,...&Thepaut, J. N..(2015).Feedbacks of dust and boundary layer meteorology during a dust storm in the eastern Mediterranean.ATMOSPHERIC CHEMISTRY AND PHYSICS,15(22),12909-12933.
MLA Remy, S.,et al."Feedbacks of dust and boundary layer meteorology during a dust storm in the eastern Mediterranean".ATMOSPHERIC CHEMISTRY AND PHYSICS 15.22(2015):12909-12933.
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