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Use of Computational Fluid Dynamics to Analyze Indoor Air Quality Issues
The potential for using a large eddy simulation (LES) computational fluid dynamics (CFD) model to analyze building indoor air quality (IAQ) and ventilation problems was investigated. The LES model was developed by the Fire Science Division of NIST to simulate the transport of smoke and hot gases during a fire in a enclosure. Based on an extensive literature review, the application of the LES model to a test case, and discussions with building industry contacts, it was determined that this model offers unique capabilities compared to other available CFD models and could be used to make a significant contribution in studying issues of current interest in the IAQ and ventilation field.
Use of Computational Fluid Dynamics to Analyze Indoor Air Quality Issues
The potential for using a large eddy simulation (LES) computational fluid dynamics (CFD) model to analyze building indoor air quality (IAQ) and ventilation problems was investigated. The LES model was developed by the Fire Science Division of NIST to simulate the transport of smoke and hot gases during a fire in a enclosure. Based on an extensive literature review, the application of the LES model to a test case, and discussions with building industry contacts, it was determined that this model offers unique capabilities compared to other available CFD models and could be used to make a significant contribution in studying issues of current interest in the IAQ and ventilation field.
Use of Computational Fluid Dynamics to Analyze Indoor Air Quality Issues
S. J. Emmerich (Autor:in)
1997
62 pages
Report
Keine Angabe
Englisch
Architectural Design & Environmental Engineering , Building Industry Technology , Computational fluid dynamics , Indoor air quality , Ventilation , Rooms , Air flow , Flow models , Turbulent flow , Fires , Smoke , Gases , Eddies(Fluid mechanics) , Carbon monoxide , Air intakes , Environmental transport , Diffusion modeling , Mathematical models , Air exchange rates
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