Published September 2004 | Version v1
Report

Dynamic-chemistry-aerosol modelling interaction: the ESCOMPTE 2001 experiment

Description

After most pollution studies independently devoted to gases and aerosols, there now appears an urgent need to consider their interactions. In this view, an aerosol module has been implemented in the Meso-NH-C model to simulate two IOPs documented during the ESCOMPTE campaign which took place in the Marseille/Fos-Berre region in June-July 2001. First, modelled dynamic parameters (winds, temperatures, boundary layer thickness) and gaseous chemistry have been validated with measurements issued from the exhaustive ESCOMPTE database. Sensitivity analysis have also been performed using different gaseous emission inventories at various resolution. These simulations have illustrated the deep impact of both synoptic and local dynamics on observed ozone concentrations on June 24 (IOP2b) in the ESCOMPTE domain. Afterwards, the ORISAM aerosol module has been introduced into the Meso-NH-C model. Dynamics, gaseous chemistry and aerosol processes have thus been coupled on-line. The particulate pollution episode on June 24 (IOP2b) has been characterised through a satisfactory comparison, specially from sub-micron particles, between modelling and measurements at different representative stations in the domain. This study, with validation of the particulate emission inventory has also highlighted the need for future improvements, such as further characterisation of organic and inorganic aerosol species and consideration of coarse particles. Aerosol impact on gaseous chemistry has been preliminary approached in view of future development and modification to be given to the Meso-NH-C model. (author)

Availability note (English)

Available from SCD Toulouse III - BU de Sciences, 118, route de Narbonne, 31062 - Toulouse Cedex 4 (France)

Additional details

Additional titles

Original title (French)
Modelisation de l'interaction dynamique- chimie - aerosol: campagne ESCOMPTE 2001

Publishing Information

Imprint Pagination
165 p.
Report number
FRNC-TH--6454

Optional Information

Notes
[150 refs.]