Indoor pollutant mixing time in an isothermal closed room: an investigation using CFD

被引:55
作者
Gadgil, AJ [1 ]
Lobscheid, C [1 ]
Abadie, MO [1 ]
Finlayson, EU [1 ]
机构
[1] Lawrence Berkeley Lab, Indoor Environm Dept, Berkeley, CA 94702 USA
关键词
mixing time; pollutant dispersion; CFD modeling; short-term exposure;
D O I
10.1016/j.atmosenv.2003.09.032
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
We report on computational fluid dynamics (CFD) predictions of mixing time of a pollutant in an unventilated, mechanically mixed, isothermal room. The study aims to determine: (1) the adequacy of the standard Reynolds Averaged Navier Stokes two-equation (k - epsilon) turbulence model for predicting the mixing time under these conditions and (2) the extent to which the mixing time depends on the room airflow, rather than the source location within the room. The CFD simulations modeled the 12 mixing time experiments performed by Drescher et al. (Indoor Air 5 (1995) 204) using a point pulse release in an isothermal, sealed room mechanically mixed with variable power blowers. Predictions of mixing time were found in good agreement with experimental measurements, over an order of magnitude variation in blower power. Additional CFD simulations were performed to investigate the relation between pollutant mixing time and source location. Seventeen source locations and five blower configurations were investigated. Results clearly show large dependence of the mixing time on the room airflow, with some dependence on source location. We further explore dependence of mixing time on the velocity and turbulence intensity at the source location. Implications for positioning air-toxic sensors in rooms are briefly discussed. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:5577 / 5586
页数:10
相关论文
共 16 条
[1]  
BAKER AJ, 1990, ASHRAE TRAN, V96, P760
[2]   MIXING OF A POINT-SOURCE POLLUTANT BY NATURAL-CONVECTION FLOW WITHIN A ROOM [J].
BAUGHMAN, AV ;
GADGIL, AJ ;
NAZAROFF, WW .
INDOOR AIR-INTERNATIONAL JOURNAL OF INDOOR AIR QUALITY AND CLIMATE, 1994, 4 (02) :114-122
[3]   MIXING OF A POINT-SOURCE INDOOR POLLUTANT BY FORCED-CONVECTION [J].
DRESCHER, AC ;
LOBASCIO, C ;
GADGIL, AJ ;
NAZAROFF, WW .
INDOOR AIR-INTERNATIONAL JOURNAL OF INDOOR AIR QUALITY AND CLIMATE, 1995, 5 (03) :204-214
[4]  
DRESCHER AC, 1994, THESIS U CALIFORNIA
[5]   Modeling indoor air concentrations near emission sources in imperfectly mixed rooms [J].
Furtaw, EJ ;
Pandian, MD ;
Nelson, DR ;
Behar, JV .
JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION, 1996, 46 (09) :861-868
[6]  
GADGIL AJ, 2000, LBNL44791
[7]  
Heiselberg P, 1996, ASHRAE TRAN, V102, P332
[8]   GENERAL EQUATION FOR THE ESTIMATION OF INDOOR POLLUTION [J].
ISHIZU, Y .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1980, 14 (10) :1254-1257
[9]   ENVIRONMENTAL TOBACCO-SMOKE CONCENTRATIONS IN NO-SMOKING AND SMOKING SECTIONS OF RESTAURANTS [J].
LAMBERT, WE ;
SAMET, JM ;
SPENGLER, JD .
AMERICAN JOURNAL OF PUBLIC HEALTH, 1993, 83 (09) :1339-1341
[10]  
LOBSCHEID C, 2001, THESIS TU BERLIN GER