Human convection flow in spaces with and without ventilation: personal exposure to floor-released particles and cough-released droplets.
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K W Tham | A. Melikov | K. Tham | C. Sekhar | J. Pantelic | D. Licina | A. Melikov | D Licina | A Melikov | J Pantelic | C Sekhar | Jovan Pantelic
[1] Arsen Krikor Melikov,et al. Advanced air distribution for minimizing airborne cross-infection in aircraft cabins , 2013 .
[2] R N Cox,et al. Aerodynamics of the human microenvironment. , 1969, Lancet.
[3] M. P. Wan,et al. Experimental Study of Dispersion and Deposition of Expiratory Aerosols in Aircraft Cabins and Impact on Infectious Disease Transmission , 2009 .
[4] S. C. Sekhar,et al. Performance evaluation of a novel personalized ventilation-personalized exhaust system for airborne infection control. , 2015, Indoor air.
[5] Andrew D. Maynard,et al. A Survey of Wind Speeds in Indoor Workplaces , 1998 .
[6] Jovan Pantelic,et al. Adequacy of air change rate as the sole indicator of an air distribution system's effectiveness to mitigate airborne infectious disease transmission caused by a cough release in the room with overhead mixing ventilation: A case study , 2013 .
[7] W. J. Mitchell,et al. Airflow Around a Child-Size Manikin in a Low-Speed Wind Environment , 2003 .
[8] A. Melikov,et al. Experimental investigation of the human convective boundary layer in a quiescent indoor environment , 2014 .
[9] A. Melikov,et al. Measurement and prediction of indoor air quality using a breathing thermal manikin. , 2007, Indoor air.
[10] K. Mengersen,et al. Characterization of expiration air jets and droplet size distributions immediately at the mouth opening , 2008, Journal of Aerosol Science.
[11] Arsen Krikor Melikov,et al. Exposure of health care workers and occupants to coughed airborne pathogens in a double-bed hospital patient room with overhead mixing ventilation , 2012, HVAC&R Research.
[12] Henrik Brohus,et al. Personal Exposure to Contaminant Sources in a Uniform Velocity Field , 1995 .
[13] Jiyuan Tu,et al. Numerical study of the effects of human body heat on particle transport and inhalation in indoor environment , 2013 .
[14] D. Rim,et al. Occupational Exposure to Hazardous Airborne Pollutants: Effects of Air Mixing and Source Location , 2010, Journal of occupational and environmental hygiene.
[15] A. Maynard,et al. A survey of wind speeds in indoor workplaces. , 1998, The Annals of occupational hygiene.
[16] Henrik Brohus,et al. Personal Exposure in Displacement Ventilated Rooms , 1996 .
[17] C. J. Saunders,et al. AIR MOVEMENT AROUND A WORKER IN A LOW-SPEED FLOW FIELD , 1996 .
[18] B Fletcher,et al. Air movement around a worker in a low-speed flow field. , 1996, The Annals of occupational hygiene.
[19] Shuzo Murakami,et al. Combined simulation of airflow, radiation and moisture transport for heat release from a human body , 2000 .
[20] C. Chao,et al. A study of the dispersion of expiratory aerosols in unidirectional downward and ceiling-return type airflows using a multiphase approach. , 2006, Indoor air.
[21] N. Toy,et al. Natural convection around the human head. , 1975, The Journal of physiology.
[22] S. Kato,et al. Study on transport characteristics of saliva droplets produced by coughing in a calm indoor environment , 2006 .
[23] Jovan Pantelic,et al. Personalized ventilation as a control measure for airborne transmissible disease spread , 2009, Journal of The Royal Society Interface.
[24] A. Melikov,et al. Exposure of health care workers and occupants to coughed air in a hospital room with displacement air distribution: impact of ventilation rate and distance from coughing patient , 2012 .
[25] J. Räisänen,et al. Contaminant dispersion in the vicinity of a worker in a uniform velocity field. , 2000 .
[26] Andrea R. Ferro,et al. Walking-induced particle resuspension in indoor environments , 2014 .
[27] A. Melikov,et al. Human convective boundary layer and its interaction with room ventilation flow. , 2015, Indoor air.
[28] D. Rim,et al. Transport of particulate and gaseous pollutants in the vicinity of a human body , 2009 .
[29] K. Meyer,et al. Airflow Characteristics at the Breathing Zone of a Seated Person: Passive Control over the Interaction of the Free Convection Flow and Locally Applied Airflow from Front for Personalized Ventilation Application , 2011 .
[30] Gerhard Scheuch,et al. Inhaling to mitigate exhaled bioaerosols. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[31] Gary S. Settles,et al. A Computational and Experimental Investigation of the Human Thermal Plume , 2005 .
[32] A. Eisner,et al. On the Impact of the Human (Child) Microclimate on Passive Aerosol Monitor Performance , 2002 .
[33] A. Melikov,et al. Impact of airflow interaction on inhaled air quality and transport of contaminants in rooms with personalized and total volume ventilation , 2003 .
[34] Arsen Krikor Melikov,et al. Impact of personal factors and furniture arrangement on the thermal plume above a sitting occupant , 2012 .
[35] M. Sandberg,et al. Building Ventilation: Theory and Measurement , 1996 .
[36] Chao-Hsin Lin,et al. Characterizing exhaled airflow from breathing and talking. , 2010, Indoor air.