Published 1996 | Version v1
Book

Do building wakes increase ground level concentrations?

  • 1. Monash Univ., Melbourne (Australia). Dept. of Mechanical Engineering

Description

As part of the EPRI Plume Rise and Downwash Project to develop and evaluate new mathematical algorithms representing plume rise and downwash, physical model studies were performed on the plume dispersion from Combustion Turbine Unit 4, (CT 4), at the Jersey Central Power and Light Sayreville Generating Station, Sayreville, New Jersey. Studies were performed both in neutral and stably stratified model atmospheric boundary layer conditions with the primary objective being to determine the behavior of the combustion turbine plume under high and low ambient wind speed conditions within the wake region produced by the combustion turbine itself. Field measurements were also performed at the site and to this end a base case wind direction of β = 335 degree was chosen for both the field and model studies in an attempt to minimize the effects of other building wakes on the plume. This paper looks at the flow and dispersion characteristics with and without these large structures in the model in an attempt to explain why the differences in concentration levels occurred

Additional details

Publishing Information

Publisher
American Meteorological Society.
Imprint Place
Boston, MA (United States)
Imprint Title
Ninth joint conference on applications of air pollution meteorology with A and WMA
Imprint Pagination
672 p.
Journal Page Range
p. 317-321.

Conference

Title
9. joint American Meteorological Society/Air and Waste Management Association conference on applications of air pollution meteorology.
Dates
28 Jan - 2 Feb 1996.
Place
Atlanta, GA (United States).

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
28028082
Subject category
S20: FOSSIL-FUELED POWER PLANTS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
COMBUSTION PRODUCTS; ENVIRONMENTAL IMPACTS; ENVIRONMENTAL TRANSPORT; FOSSIL-FUEL POWER PLANTS; MATHEMATICAL MODELS
Descriptors DEC
MASS TRANSFER; POWER PLANTS; THERMAL POWER PLANTS

Optional Information

Secondary number(s)
CONF-960127--.