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Original Articles

Numerical and experimental investigation on the dynamic airflow of human movement in a full-scale cabin

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Pages 444-457 | Received 28 May 2013, Accepted 13 Dec 2013, Published online: 09 May 2014

References

  • Bjorn, E., and P.V. Nielsen. 2002. Dispersal of exhaled air and personal exposure in displacement ventilated rooms. Indoor Air 12:147–64.
  • Brohus, H., K.D. Balling, and D. Jeppesen. 2006. Influence of movements on contaminant transport in an operating room. Indoor Air 16: 356372.
  • Bruun, H.H. 1979. Interpretation of hot-wire probe signals in subsonic airflows. Journal of Physics E—Scientific Instruments 12:1116–28.
  • Choi, J.I., and J.R. Edwards. 2008. Large eddy simulation and zonal modeling of human-induced contaminant transport. Indoor Air 18:233–49.
  • Choi, J.I., and J.R. Edwards. 2012. Large-eddy simulation of human-induced contaminant transport in room compartments. Indoor Air 22:77–87.
  • DeHart, R.L. 2003. Health issues of air travel. Annual Review of Public Health 24:133–51.
  • Edge, B.A., E.G Paterson, and G.S. Settles. 2005. Computational study of the wake and contaminant transport of a walking human. Journal of Fluids Engineering 127:967–77.
  • Fitouri, A., M.K. Khan, and H.H. Bruun. 1995. A multiposition hot-wire technique for the study of swirling flows in vortex chambers. Experimental Thermal and Fluid Science 10:142–51.
  • Gao, N.P., and J.L. Niu. 2005. CFD study of the thermal environment around a human body: A review. Indoor and Built Environment 14:5–16.
  • Han, Z.Y., W.G. Weng, Q.Y. Huang, M. Fu, J. Yang, and N. Luo. 2013. Aerodynamic characteristics of human movement behaviours in full-scale environment: Comparison of limbs pendulum and body Motion. Indoor and Built Environment, DOI: 10.1177/1420326X13504122.
  • Jørgensen, F.E. 1971. Directional sensitivity of wire and fibre-film probes. DISA Information 11:31–7.
  • Jenkins, P.L., T.J. Phillips, E.J. Mulberg, and S.P. Hui. 1992. Activity patterns of californians - use of and proximity to indoor pollutant sources. Atmospheric Environment Part A—General Topics 26:2141–8.
  • Krajnovic, S. 2011. Flow around a tall finite cylinder explored by large eddy simulation. Journal of Fluid Mechanics 676:294–317.
  • Leech, J.A., W.C. Nelson, R.T. Burnett, S. Aaron and M.E. Raizenne. 2002. It's about time: A comparison of Canadian and American time-activity patterns. Journal of Exposure Analysis and Environmental Epidemiology 12:427–32.
  • Liu, W., S. Mazumdar, Z. Zhang, S.B. Poussou, J.J. Liu, C.H. Lin, and Q.Y. Chen. 2012. State-of-the-art methods for studying air distributions in commercial airliner cabins. Building and Environment 47:5–12.
  • Mangili, A., and M.A. Gendreau. 2005. Transmission of infectious diseases during commercial air travel. Lancet 365:989–96.
  • Matsumoto, H., and Y. Ohba. 2004. The influence of a moving object on air distribution in displacement ventilated rooms. Journal of Asian Architecture and Building Engineering 3:71–5.
  • Mazumdar, S., S.B. Poussou, C.H. Lin, S.S. Isukapalli, M.W. Plesniak, and Q.Y. Chen. 2011. Impact of scaling and body movement on contaminant transport in airliner cabins. Atmospheric Environment 45:6019–28.
  • Mazumdar, S., Y.G. Yin, A. Guity, P. Marmion, B. Gulick, and Q.Y. Chen. 2010. Impact of moving objects on contaminant concentration distributions in an inpatient ward with displacement ventilation. HVAC&R Research 16:545–63.
  • McFarland, J.W., C. Hickman, M.T. Osterholm, and K.L. Macdonald. 1993. Exposure to mycobacterium-tuberculosis during air-travel. Lancet 342:112–3.
  • Park, C.W., and S.J. Lee. 2000. Free end effects on the near wake flow structure behind a finite circular cylinder. Journal of Wind Engineering and Industrial Aerodynamics 88:231–46.
  • Park, C.W., and S.J. Lee. 2002. Flow structure around a finite circular cylinder embedded in various atmospheric boundary layers. Fluid Dynamics Research 30:197–215.
  • Poussou, S.B., S. Mazumdar, M.W. Plesniak, P.E. Sojka, and Q.Y. Chen. 2010. Flow and contaminant transport in an airliner cabin induced by a moving body: Model experiments and CFD predictions. Atmospheric Environment 44:2830–9.
  • Shih, Y.C., C.C. Chiu, and O. Wang. 2007. Dynamic airflow simulation within an isolation room. Building and Environment 42:3194–209.
  • Thai, Z.Q., W. Zhang, Z. Zhang, and Q.Y. Chen. 2007. Evaluation of various turbulence models in predicting airflow and turbulence in enclosed environments by CFD: Part 1—Summary of prevalent turbulence models. HVAC&R Research 13:853–70.
  • Thatcher, T.L., D.J. Wilson, E.E. Wood, M.J. Craig, and R.G. Sextro. 2004. Pollutant dispersion in a large indoor space: Part 1 - Scaled experiments using a water-filled model with occupants and furniture. Indoor Air 14:258–71.
  • Wang, J., and T.T. Chow. 2011. Numerical investigation of influence of human walking on dispersion and deposition of expiratory droplets in airborne infection isolation room. Building and Environment 46:1993–2002.
  • World Health Organization. 2004. The world health report. Statistical annex. Switzerland: The WHO Press.
  • World Health Organization. 2007. International travel and health. Chapter 5. Switzerland: The WHO Press.
  • Yi, Y., W. Xu, J.K. Gupta, A. Guity, P. Marmion, A. Manning, B. Gulick, X. Zhang, and Q. Chen. 2009. Experimental study on displacement and mixing ventilation systems for a patient ward. HVAC&R Research 15:1175–91.
  • Zhang, Z., X. Chen, S. Mazumdar, T.F. Zhang, and Q.Y. Chen. 2009. Experimental and numerical investigation of airflow and contaminant transport in an airliner cabin mockup. Building and Environment 44:85–94.
  • Zhang, Z., Z.Q. Zhai, W. Zhang, and Q.Y. Chen. 2007. Evaluation of various turbulence models in predicting airflow and turbulence in enclosed environments by CFD: Part 2—Comparison with experimental data from literature. HVAC&R Research 13:871–86.
  • Zhao, B., Y. Zhang, X. Li, X. Yang, and D. Huang. 2004. Comparison of indoor aerosol particle concentration and deposition in different ventilated rooms by numerical method. Building and Environment 39:1–8.

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