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PMID: 23243192 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Simulation and evaluation of respirator faceseal leaks using computational fluid dynamics and infrared imaging.

The Annals of occupational hygiene ·Vol. 57 ·No. 4 ·2013-05-00 ·页码 493-506

Lei Z, Yang J, Zhuang Z, Roberge R

Abstract

This paper presents a computational fluid dynamics (CFD) simulation approach for the prediction of leakage between an N95 filtering facepiece respirator (FFR) and a headform and an infrared camera (IRC) method for validating the CFD approach. The CFD method was used to calculate leak location(s) and 'filter-to-faceseal leakage' (FTFL) ratio for 10 headforms and 6 FFRs.The computational geometry and leak gaps were determined from analysis of the contact simulation results between each headform-N95 FFR combination. The volumetric mesh was formed using a mesh generation method developed by the authors. The breathing cycle was described as a time-dependent profile of the air velocity through the nostril. Breathing air passes through both the FFR filter medium and the leak gaps. These leak gaps are the areas failing to achieve a seal around the circumference of the FFR. The CFD approach was validated by comparing facial temperatures and leak sites from IRC measurements with eight human subjects. Most leaks appear at the regions of the nose (40%) and right (26%) and left cheek (26%) sites. The results also showed that, with N95 FFR (no exhalation valves) use, there was an increase in the skin temperature at the region near the lip, which may be related to thermal discomfort. The breathing velocity and the viscous resistance coefficient of the FFR filter medium directly impacted the FTFL ratio, while the freestream flow did not show any impact on the FTFL ratio. The proposed CFD approach is a promising alternative method to study FFR leakage if limitations can be overcome.

MeSH 主题词
Air Pollutants, Occupational/analysis Computer Simulation Equipment Design/standards Filtration/instrumentation Humans Hydrodynamics Inhalation Exposure/analysis,prevention & control Manikins Materials Testing/methods Occupational Exposure/analysis Respiratory Protective Devices/standards
化学物质
Air Pollutants, Occupational
作者与单位
共 4 位作者,点击展开单位 / ORCID
Lei Zhipeng
Department of Mechanical Engineering, Human-Centric Design Research Laboratory, Texas Tech University, Lubbock, TX 79409, USA.
Yang James
Zhuang Ziqing
Roberge Raymond
Article Info
Journal
The Annals of occupational hygiene
Abbr.
Ann Occup Hyg
ISSN
1475-3162
Published
2013-05-00
电子出版
2012-00-13
页码
493-506
Language
English
Country/Region
England
NLM ID
0203526
基金资助
PHS HHS · 254-2009-M-31878 · United States
PHS HHS · 254-2010-M-36735 · United States
Analysis Services
Analysis Services

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