Title of article :
Computational fluid dynamics (CFD) simulation of liquid aerosol coalescing filters
Author/Authors :
Mead-Hunter، نويسنده , , Ryan S. King، نويسنده , , Andrew J.C. and Kasper، نويسنده , , Gerhard and Mullins، نويسنده , , Benjamin J.، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2013
Pages :
14
From page :
36
To page :
49
Abstract :
This work presents a new computational fluid dynamics model, developed to simulate the behaviour of fibrous filters used to treat liquid aerosols. We demonstrate that the solver can resolve the fundamental processes that occur in coalescing filters, such as aerosol droplet capture, coalescence, film break-up, and the motion of coalesced liquid droplets. Initial simulations were conducted on idealised geometries to ensure agreement between the simulations and existing theory, before simulations on more complex geometries were carried out, and finally simulations on realistic filter geometries. It is demonstrated that CFD can provide a viable alternative to whole-scale mist filter testing, particularly if high performance computational resources are available. Additionally, the paper includes a comprehensive treatment of the issues to be overcome when using Lagrangian methods to simulate nano-sized aerosols.
Keywords :
Coalescence , Computational fluid dynamics , Fibrous Filter , Single fibre efficiency , OPENFOAM
Journal title :
Journal of Aerosol Science
Serial Year :
2013
Journal title :
Journal of Aerosol Science
Record number :
1386275
Link To Document :
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