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Application of acoustic agglomeration to enhance air filtration efficiency in air-conditioning and mechanical ventilation (ACMV) systems
- Source :
- PLoS ONE, PLoS ONE, Vol 12, Iss 6, p e0178851 (2017)
- Publication Year :
- 2017
- Publisher :
- Public Library of Science (PLoS), 2017.
-
Abstract
- The recent episodes of haze in Southeast Asia have caused some of the worst regional atmospheric pollution ever recorded in history. In order to control the levels of airborne fine particulate matters (PM) indoors, filtration systems providing high PM capturing efficiency are often sought, which inadvertently also results in high airflow resistance (or pressure drop) that increases the energy consumption for air distribution. A pre-conditioning mechanism promoting the formation of particle clusters to enhance PM capturing efficiency without adding flow resistance in the air distribution ductwork could provide an energy-efficient solution. This pre-conditioning mechanism can be fulfilled by acoustic agglomeration, which is a phenomenon that promotes the coagulation of suspended particles by acoustic waves propagating in the fluid medium. This paper discusses the basic mechanisms of acoustic agglomeration along with influencing factors that could affect the agglomeration efficiency. The feasibility to apply acoustic agglomeration to improve filtration in air-conditioning and mechanical ventilation (ACMV) systems is investigated experimentally in a small-scale wind tunnel. Experimental results indicate that this novel application of acoustic pre-conditioning improves the PM2.5 filtration efficiency of the test filters by up to 10% without introducing additional pressure drop. The fan energy savings from not having to switch to a high capturing efficiency filter largely outstrip the additional energy consumed by the acoustics system. This, as a whole, demonstrates potential energy savings from the combined acoustic-enhanced filtration system without compromising on PM capturing efficiency. NRF (Natl Research Foundation, S’pore) MOE (Min. of Education, S’pore) Published version
- Subjects :
- Inertia
010504 meteorology & atmospheric sciences
Airflow
lcsh:Medicine
Fluid Mechanics
010501 environmental sciences
Continuum Mechanics
01 natural sciences
law.invention
Motion
Aerodynamics
Acoustic Agglomeration
law
Air Conditioning
lcsh:Science
Process engineering
Sound Waves
Filtration
0105 earth and related environmental sciences
Wind tunnel
Pressure drop
Multidisciplinary
Economies of agglomeration
business.industry
Physics
lcsh:R
Classical Mechanics
Biology and Life Sciences
Fluid Dynamics
Acoustics
Acoustic wave
Energy consumption
Respiration, Artificial
Dynamics
Turbulence
Air conditioning
Air Pollution, Indoor
Air Flow
Physical Sciences
Hydrodynamics
Environmental science
lcsh:Q
Particulate Matter
Sound Pressure
business
Bioacoustics
Research Article
Subjects
Details
- ISSN :
- 19326203
- Volume :
- 12
- Database :
- OpenAIRE
- Journal :
- PLOS ONE
- Accession number :
- edsair.doi.dedup.....812c926569d7bee8665658ee5d045b9a
- Full Text :
- https://doi.org/10.1371/journal.pone.0178851