Biblio
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. Real-time measurement of outdoor tobacco smoke
particles. Journal of the Air and Waste Management Association. 2007;57:522-534.
. An equation-based simulation environment to
investigate fast building simulation. Building and Environment. 2006;41:1571--1583.
. Modeling residential exposure to secondhand tobacco
smoke. Atmospheric Environment. 2006;40:4393-4407.
. Short-term dispersion of indoor aerosols: can it be
assumed the room is well mixed?. Building and Environment. 2006;41:156--163.
. Systems approach to evaluating sensor characteristics
for real-time monitoring of high-risk indoor
contaminant releases. Atmospheric Environment. 2006;40:3490--3502.
. Tracer gas transport under mixed convection
conditions in an experimental atrium: Comparison
between experiments and CFD predictions. Atmospheric environment(1994). 2006;40:5236--5250.
. Elevated personal exposure to particulate matter from
human activities in a residence. Journal of exposure analysis and environmental
epidemiology. 2004;14:34--40.
. Indoor particle dynamics. Indoor Air. 2004;14:175--183.
. Pollutant dispersion in a large indoor space: Part 1-
Scaled experiments using a water-filled model with
occupants and furniture. Indoor Air. 2004;14:258--271.
. Analytical solutions to compartmental indoor air
quality models with application to environmental
tobacco smoke concentrations measured in a house. Journal of the Air and Waste Management Association. 2003;53:918-936.
. Indoor pollutant mixing time in an isothermal closed
room: an investigation using CFD. Atmospheric Environment. 2003;37:5577--5586.
. Prediction of indoor gaseous pollutant dispersion by
nesting sub-zones within a multizone model. Building and Environment. 2003;38:635--643.
. A Marked Point Process Model for the Source Proximity
Effect in the Indoor Environment. Journal of the American Statistical Association. 2002;97:683--692.
. Mixing Characteristics of a Continuously
Emitting Point Source in a Room. In: Indoor Air '02, Proceedings of the 8th
International Conference on Indoor Air
Quality and Climate. Vol. 4. Indoor Air '02, Proceedings of the 8th
International Conference on Indoor Air
Quality and Climate. Monterey; 2002. p. 229-234.
. Mixing of a point-source indoor pollutant: Numerical
predictions and comparison with experiments. Indoor Air. 2002;2002.
. Environmental tobacco smoke particles in multizone
indoor environments. Atmospheric Environment. 2001;35:2053-2067.
. Rapid measurements and mapping of tracer gas
concentrations in a large indoor space. Atmospheric Environment. 2001;35:2837--2844.
. Modeling Indoor Air Pollution Using Superposition. Bulletin International Statistical Institute, Tome
LVIII,(Book 2). 1999:501--504.
. The validity of the uniform mixing assumption:
determining exposure to environmental tobacco smoke. Environmental Health Perspectives Supplements. 1999;107:357-363.
. Building Ventilation: Theory and Measurement.; 1996 p. .
. The correction for nonuniform mixing in indoor
environments. In: Characterizing Indoor Air Pollution and
Related Sink Effects. Characterizing Indoor Air Pollution and
Related Sink Effects. West Conshohocken, PA; 1996. p. 263-278.
. Modeling indoor air concentrations near emission
sources in imperfectly mixed rooms. Journal of the Air and Waste Management Association. 1996;46:861-868.



