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Characteristics of physical blocking on co-occupant's exposure to respiratory droplet residuals 被引量:3

Characteristics of physical blocking on co-occupant's exposure to respiratory droplet residuals
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摘要 Existed evidences show that airborne transmission of human respiratory droplets may be related with the spread of some infectious disease, such as severe acute respiratory syndrome (SARS) and H1N1 pandemic. Non-pharmaceutical approaches, including ventilation system and personal protection, are believed to have certain positive effects on the reduction of co-occupant's inhalation. This work then aims to numerically study the performances of mouth covering on co-occupant's exposure under mixing ventilation (MV), under-floor air distribution (UFAD) and displacement ventilation (DV) system, using drift-flux model. Desk partition, as one generally employed arrangement in plan office, is also investigated under MV. The dispersion of 1, 5 and 10 grn droplet residuals are numerically calculated and CO2 is used to represent tracer gas. The results show that using mouth covering by the infected person can reduce the co-occupant's inhalation greatly by interrupting direct spread of the expelled droplets, and best performance can be achieved under DV since the coughed air is mainly confined in the microenvironment of the infected person. The researches under MV show that the two interventions, mouth covering and desk partition, achieve almost the sarae inhalation for fine droplets while the inhalation of the co-occupant is lower when using mouth covering for large droplets. Existed evidences show that airborne transmission of human respiratory droplets may be related with the spread of some infectious disease,such as severe acute respiratory syndrome(SARS) and H1N1 pandemic.Non-pharmaceutical approaches,including ventilation system and personal protection,are believed to have certain positive effects on the reduction of co-occupant's inhalation.This work then aims to numerically study the performances of mouth covering on co-occupant's exposure under mixing ventilation(MV),under-floor air distribution(UFAD) and displacement ventilation(DV) system,using drift-flux model.Desk partition,as one generally employed arrangement in plan office,is also investigated under MV.The dispersion of 1,5 and 10 μm droplet residuals are numerically calculated and CO2 is used to represent tracer gas.The results show that using mouth covering by the infected person can reduce the co-occupant's inhalation greatly by interrupting direct spread of the expelled droplets,and best performance can be achieved under DV since the coughed air is mainly confined in the microenvironment of the infected person.The researches under MV show that the two interventions,mouth covering and desk partition,achieve almost the same inhalation for fine droplets while the inhalation of the co-occupant is lower when using mouth covering for large droplets.
出处 《Journal of Central South University》 SCIE EI CAS 2012年第3期645-650,共6页 中南大学学报(英文版)
基金 funded by Research Grant Committee of the Hong Kong SAR government (RGC No. PolyU5265/08E)
关键词 mouth covering desk partition respiratory droplets exposure ventilation method 严重急性呼吸道综合征 居住者 空气传播 残差 特征 阻塞 物理 漂移通量模型
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  • 1World Health Organization. Pandemic influenza preparedness and response: a WHO guidance document [R]. Geneva: WHO, 2009.
  • 2JEFFERSON T, DEL MAR C, DOOLEY L, FERRONI E, AL-ANSARY L A, BAWAZEER G A, DR/EL M L, FOXLEE R, RIVETTI A. Physical interventions to interrupt or reduce the spread of respiratory viruses: systematic review [J]. BMJ, 2008, 336(7635): 77-80.
  • 3LI Y, LELrNG G M, TANG J W, YANG X, CHAO C Y H, L1N J Z, LU J W, Nielsen P V, NIU J, QIAN H. SLEIGH A C, SU H J J, SUNDELL J, WONG T W, Yuen P L. Role of ventilation in airborne transmission of infectious agents in the built environment-a multidisciplinary systematic review [J]. Indoor Air, 2007, 17(1), 2-18.
  • 4GAO Nai-ping, NIU Jian-lei. Transient CFD simulation of the respiration process and inter-person exposure assessment [J]. Building and Environment, 2006, 41(9): 1214-1222.
  • 5GAO Nai-ping, NIU Jian-lei, MORAWSKA LIDIA. Distribution of respiratory droplets in enclosed environment under different air distribution methods [J]. Building Simulation, 2008, 1(4): 326-335.
  • 6MUI K W, WONG L T, WU C L, LAI A C K. Numerical modeling of exhaled droplet nuclei dispersion and mixing in indoor environments [J]. Journal of Hazardous Material, 2009, 167(1/2/3): 736-744.
  • 7WAN M P, CHAO C Y H. Transport characteristics of expiratory droplets and droplet nuclei in indoor environments with different ventilation airflow patterns [J]. Journal of biomechanical engineering, 2007, 129(3): 341-353.
  • 8KNIGHT Jonathan. Researchers get to grips with cause of pneumonia epidemic [J]. Nature, 2003, 422(6932): 547-548.
  • 9DERRICK J L, GOMERSALL C D. Protecting healthcare staff from severe acute respiratory syndrome: filtration capacity of multiple surgical masks [J]. Journal of Hospital Infection, 2005, 59(4): 365-368.
  • 10TANG J W, LIEBNER T J, CRAVEN B A, SETTLES G S. A Schlieren optical study of the human cough with and without wearing masks for aerosol infection control [J]. Journal of the Royal Society Interface, 2009, 6(6): S727-S736.

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