A numerical study of the aspiration efficiency of a thin-walled sampler facing the wind for high velocity ratios
Author:
Publisher
Elsevier BV
Subject
Pollution,Atmospheric Science,Fluid Flow and Transfer Processes,Mechanical Engineering,Environmental Engineering
Reference13 articles.
1. Collection of gas borne dust particles by means of an aspirated sampling nozzle;Badzioch;British Journal for Applied Physics,1959
2. Techniques for collection of representative aerosol samples;Belyaev;Journal of Aerosol Science,1974
3. The mathematics of blunt body sampling. Lecture notes in engineering;Dunnett,1988
4. A numerical study of the sampling efficiency of a tube sampler operating in calm air facing both vertically upwards and downwards;Dunnett;Journal of Aerosol Science,2002
5. Sampling errors in cylindrical nozzles;Grinshpun;Aerosol Science Technology,1990
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1. Reducing energy consumption and increasing filter life in HVAC systems using an aspiration efficiency reducer: Long-term performance assessment at full-scale;Journal of Building Engineering;2017-07
2. The development and assessment of an aspiration efficiency reducing system of air pollution control for particulate matter in building ventilation systems;Energy and Buildings;2013-06
3. Effect of sampling in the evaluation of particle size distribution in nanoaerosols;Powder Technology;2010-06
4. A numerical analysis of the aspiration efficiency of a personal sampler;International Journal of Environment and Pollution;2010
5. Calculation of particle concentration in the problem of aerosol aspiration into a thin-walled tube;Fluid Dynamics;2009-12
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