Subgrid-scale treatment for major point sources in an Eulerian model: a sensitivity study on the ETEX and Chernobyl cases
نویسنده
چکیده
We investigate the plume-in-grid method for a subgrid-scale treatment of major point sources in the passive case. This method consists in an on-line coupling of a Gaussian puff model and an Eulerian model, which better represents the point emissions without significantly increasing the computational burden. In this paper, the plume-in-grid model implemented on the Polyphemus air quality modeling system is described, with an emphasis on the parameterizations available for the Gaussian dispersion, and on the coupling with the Eulerian model. The study evaluates the model for passive tracers at continental scale with the ETEX experiment and the Chernobyl case. The aim is to (1) estimate the model sensitivity to the local-scale parameterizations, and (2) to bring insights on the spatial and temporal scales that are relevant in the use of a plume-in-grid model. It is found that the plume-ingrid treatment improves the vertical diffusion at local-scale, thus reducing the bias—especially at the closest stations. Doury’s Gaussian parameterization and a column injection method give the best results. There is a strong sensitivity of the results to the injection time and the grid resolution. The “best” injection time actually depends on the resolution, but is difficult to determine a priori. The plume-in-grid method is also found to improve the results at fine resolutions more than with coarse grids, by compensating the Eulerian tendency to over-predict the concentrations at these resolutions. D R A F T November 27, 2010, 11:56am D R A F T in ria -0 05 43 21 4, v er si on 1 6 D ec 2 01 0 KORSAKISSOK ET AL.: SUBGRID-SCALE TREATMENT OF POINT SOURCES X 3
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