Arid
DOI10.5194/gmd-10-927-2017
Aerosol-radiation interaction modelling using online coupling between the WRF 3.7.1 meteorological model and the CHIMERE 2016 chemistry-transport model, through the OASIS3-MCT coupler
Briant, Regis1,2; Tuccella, Paolo1; Deroubaix, Adrien1; Khvorostyanov, Dmitry1; Menut, Laurent1; Mailler, Sylvain1; Turquety, Solene1
通讯作者Briant, Regis
来源期刊GEOSCIENTIFIC MODEL DEVELOPMENT
ISSN1991-959X
EISSN1991-9603
出版年2017
卷号10期号:2页码:927-944
英文摘要

The presence of airborne aerosols affects the meteorology as it induces a perturbation in the radiation budget, the number of cloud condensation nuclei and the cloud micro-physics. Those effects are difficult to model at regional scale as regional chemistry-transport models are usually driven by a distinct meteorological model or data. In this paper, the coupling of the CHIMERE chemistry-transport model with the WRF meteorological model using the OASIS3-MCT coupler is presented. WRF meteorological fields along with CHIMERE aerosol optical properties are exchanged through the coupler at a high frequency in order to model the aerosol-radiation interactions. The WRF-CHIMERE online model has a higher computational burden than both models run separately in offline mode (up to 42% higher). This is mainly due to some additional computations made within the models such as more frequent calls to meteorology treatment routines or calls to optical properties computation routines. On the other hand, the overall time required to perform the OASIS3-MCT exchanges is not significant compared to the total duration of the simulations. The impact of the coupling is evaluated on a case study over Europe, northern Africa, the Middle East and western Asia during the summer of 2012, through comparisons of the offline and two online simulations (with and without the aerosol optical properties feedback) to observations of temperature, aerosol optical depth (AOD) and surface PM10 (particulate matter with diameters lower than 10 mu m) concentrations. The result shows that using the optical properties feedback induces a radiative forcing (average forcing of -4.8 W m(-2)) which creates a perturbation in the average surface temperatures over desert areas (up to 2.6 degrees locally) along with an increase in both AOD and PM10 concentrations.


类型Article
语种英语
国家France ; Switzerland
收录类别SCI-E
WOS记录号WOS:000395112500002
WOS关键词GENERAL-CIRCULATION MODEL ; ACCURATE SIMULATION ; SYSTEM MODEL ; OCEAN MODEL ; IMPACT ; PHOTOLYSIS ; PRECIPITATION ; PREDICTION ; ATMOSPHERE ; EMISSION
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/199321
作者单位1.Ecole Polytech, LMD, F-91128 Palaiseau, France;
2.Univ Geneva, Inst Environm Sci, Climat Change & Climate Impacts, Blvd Carl Vogt 66, CH-1205 Geneva, Switzerland
推荐引用方式
GB/T 7714
Briant, Regis,Tuccella, Paolo,Deroubaix, Adrien,et al. Aerosol-radiation interaction modelling using online coupling between the WRF 3.7.1 meteorological model and the CHIMERE 2016 chemistry-transport model, through the OASIS3-MCT coupler[J],2017,10(2):927-944.
APA Briant, Regis.,Tuccella, Paolo.,Deroubaix, Adrien.,Khvorostyanov, Dmitry.,Menut, Laurent.,...&Turquety, Solene.(2017).Aerosol-radiation interaction modelling using online coupling between the WRF 3.7.1 meteorological model and the CHIMERE 2016 chemistry-transport model, through the OASIS3-MCT coupler.GEOSCIENTIFIC MODEL DEVELOPMENT,10(2),927-944.
MLA Briant, Regis,et al."Aerosol-radiation interaction modelling using online coupling between the WRF 3.7.1 meteorological model and the CHIMERE 2016 chemistry-transport model, through the OASIS3-MCT coupler".GEOSCIENTIFIC MODEL DEVELOPMENT 10.2(2017):927-944.
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