Sunday, February 11, 2007

[study4progressreport]monday meeting

Comparison of indoor aerosol particle concentration and deposition in different ventilated rooms by numerical method
Bin Zhao, Ying Zhang, Xianting Li, Xudong Yang, Dongtao Huang
Dept. of Biulding Science & Dept of Engineering Mechanics,Tsinghua University, Beijing, China
University of Miami, Coral Gables, FL 33124-0630, USA
Building and Environment 39 (2004) 1-8

PM is a ubiquitous pollutan indoor and outdoor around the world. Aerosol particles are regarded as significant pollutant sources in the indoor environment. The aerosol particle concentration is a room greatly influences the IAQ.

Aerosol particles may also be deposited on interior surfaces, causing a soiling problem and further leading to damage, for example on works of art in museums.

The movement of particles in ventilated areas is influenced by many factors, such as:
airflow pattern,
particle properties,
geometry configurations,
ventilation rates,
supply and exhaust diffuser locations,
internal partitions,
thermal buoyancy due to the heat generated by occupants and/or equipment,
etc. [1 and 2].

1. W. Lu and A.T. Howarth, Numerical analysis of indoor aerosol particle deposition and distribution in two-zone ventilated system. Building and Environment 31 (1996), pp. 41–50. SummaryPlus | Full Text + Links | PDF (986 K) | Abstract + References in Scopus | Cited By in Scopus

2. W. Lu, A.T. Howarth, N. Adam and S. Riffat, Modeling and measurement of airflow and aerosol particle distribution in a ventilated two-zone chamber. Building and Environment 31 (1996), pp. 417–423. SummaryPlus | Full Text + Links | PDF (630 K) | Abstract + References in Scopus | Cited By in Scopus

3. W. Lu and A.T. Howarth, Indoor aerosol particle deposition and distribution: numerical analysis for a one-zone ventilation system. Building Services Engineering Research and Technology 16 (1995), pp. 141–147. Abstract + References in Scopus | Cited By in Scopus

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