Title of article
Numerical simulation of smoke plumes from large oil fires
Author/Authors
Kevin B. McGrattan، نويسنده , , Howard R. Baum، نويسنده , , Ronald G. Rehm، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1996
Pages
12
From page
4125
To page
4136
Abstract
A large eddy simulation (LES) model of smoke plumes generated by large outdoor pool fires is presented. The plume is described in terms of steady-state convective transport by a uniform ambient wind of heated gases and particulate matter introduced into a stably stratified atmosphere by a continuously burning fire. The Navier-Stokes equations in the Boussinesq approximation are solved numerically with a constant eddy viscosity representing dissipation on length scales below the resolution limits of the calculation. The effective Reynolds number is high enough to permit direct simulation of the large-scale mixing over two to three orders of magnitude in length scale. Particulate matter, or any non-reacting combustion ;product, is represented by Lagrangian particles which are advected by the fire-induced flow field. Background atmospheric motion is described in terms of the angular fluctuation of the prevailing wind, and represented by random perturbations to the mean particle paths. Results of the model are compared with two sets of field experiments.
Keywords
large eddy simulation. , in situ burning , Crude oil , Buoyant plumes
Journal title
Atmospheric Environment
Serial Year
1996
Journal title
Atmospheric Environment
Record number
754571
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