Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Prediction of air pollution frequency distribution — Part II. The Gaussian plume model
Abstract Hourly and daily averaged concentrations of SO2, measured from January until March 1973 at 125 sampling locations in the industrial Rijnmond region in the Netherlands, are compared with results of the Gaussian plume model. The average correlation coefficient between the observed and calculated time series is 0.3. The observed and calculated frequency distribution agree at the 50-percentile within a factor 2, when the background concentration is included in the calculations. For the higher percentiles such as the 98-percentile the deviations between calculated and observed results are approximately within a factor 4. The frequency distributions are also calculated with the aid of an empirical model. The results obtained with this model for the 98-percentile are better than those obtained with the Gaussian plume model.
Prediction of air pollution frequency distribution — Part II. The Gaussian plume model
Abstract Hourly and daily averaged concentrations of SO2, measured from January until March 1973 at 125 sampling locations in the industrial Rijnmond region in the Netherlands, are compared with results of the Gaussian plume model. The average correlation coefficient between the observed and calculated time series is 0.3. The observed and calculated frequency distribution agree at the 50-percentile within a factor 2, when the background concentration is included in the calculations. For the higher percentiles such as the 98-percentile the deviations between calculated and observed results are approximately within a factor 4. The frequency distributions are also calculated with the aid of an empirical model. The results obtained with this model for the 98-percentile are better than those obtained with the Gaussian plume model.
Prediction of air pollution frequency distribution — Part II. The Gaussian plume model
Nieuwstadt, F.T.M. (Autor:in)
Atmospheric Environment ; 14 ; 259-265
05.09.1979
7 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
A surface depletion model for deposition from a Gaussian plume
Elsevier | 1976
|Method for baghouse brown plume pollution control
Elsevier | 1990
Optimal Ground-Water Pollution Plume Containment with Fixed Charges
Online Contents | 1997
|Gaussian versus top-hat profile assumptions in integral plume models
Elsevier | 1985
|