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contributor authorSchmid, Paul E.
contributor authorNiyogi, Dev
date accessioned2017-06-09T16:51:43Z
date available2017-06-09T16:51:43Z
date issued2017
identifier issn1558-8424
identifier otherams-75453.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4217791
description abstracthis study introduces a methodology to simulate how spatially heterogeneous urban aerosols modify a precipitating thunderstorm in a numerical weather model. An air quality model (Simple Photochemical Model, SPM) was coupled with a high resolution mesoscale weather model (Regional Atmospheric Modeling Systems, RAMS) and generated variable urban cloud condensation nuclei values consistent with those measured in previous field studies. The coupled emission model was used to simulate the passage of a synoptic low with embedded thunderstorms over an idealized city, using the Real Atmosphere Idealized Land surface (RAIL) method. Experiments were conducted to calibrate the surface formation of cloud-nucleating aerosols in an urban environment, then assess the specific response of different aerosol loads on simulated precipitation. The model response to aerosol heterogeneity reduced the total precipitation, but significantly increased simulated rain rates. High aerosol loading scenarios produced a peak city-edge precipitation rate of over 100 mm∙hr-1 greater than a control containing only a city land surface with no emissions. By comparing the control to a scenario with no city, the land-surface effect produced a rain rate increase of up to 20 mm∙hr-1. Results indicate, within the limits of the model framework, that the urban rainfall modification is a combination of land heterogeneity causing the dynamical lifting of the air mass and aerosols, with rainfall enhancement being maintained and synergistically increased due to the aerosol indirect effects on cloud properties.
publisherAmerican Meteorological Society
titleModeling Urban Precipitation Modification by Spatially Heterogeneous Aerosols
typeJournal Paper
journal volume056
journal issue008
journal titleJournal of Applied Meteorology and Climatology
identifier doi10.1175/JAMC-D-16-0320.1
journal fristpage2141
journal lastpage2153
treeJournal of Applied Meteorology and Climatology:;2017:;volume( 056 ):;issue: 008
contenttypeFulltext


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