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[해외논문] Computational study of breathing methods for inhalation exposure

HVAC&R research : international journal of heating, ventilating, air-conditioning, and refrigerating research, v.17 no.4, 2011년, pp.419 - 431  

Russo, Jackie Sue (a Mechanical & Aerospace Engineering , Syracuse University , Syracuse, NY, USA) ,  Khalifa, Ezzat (a Mechanical & Aerospace Engineering , Syracuse University , Syracuse, NY, USA)

초록이 없습니다.

참고문헌 (22)

  1. Bennett, Deborah H., McKone, Thomas E., Evans, John S., Nazaroff, William W., Margni, Manuele D., Jolliet, Olivier, Smith, Kirk R.. Peer Reviewed: Defining Intake Fraction. Environmental science & technology, vol.36, no.9, 206A-211A.

  2. Bjørn, E., Nielsen, P. V.. Dispersal of exhaled air and personal exposure in displacement ventilated rooms. Indoor air, vol.12, no.3, 147-164.

  3. Personal exposure to contaminant sources in ventilated rooms. Ph.D. thesis Brohus H. 1997 Brohus , H. 1997 . Personal exposure to contaminant sources in ventilated rooms. Ph.D. thesis , Denmark : Aalborg University . 

  4. Proceedings of Healthy Buildings 2003 Cermak R. 486 2 2003 Performance of personalized ventilation in a room with an underfloor air distribution system: Transport of contaminants between occupants Cermak , R. and Melikov , A. K. 2003 . Performance of personalized ventilation in a room with an underfloor air distribution system: Transport of contaminants between occupants . Proceedings of Healthy Buildings 2003 , 2 : 486 - 91 . 

  5. Cermak, Radim, Melikov, Arsen K., Forejt, Lubos, Kovar, Oldrich. Performance of Personalized Ventilation in Conjunction with Mixing and Displacement Ventilation. HVAC&R research : international journal of heating, ventilating, air-conditioning, and refrigerating research, vol.12, no.2, 295-311.

  6. ASHRAE Transactions Dygert R. 407 115 2 2009 Modeling of the human body to study the personal micro-environment Dygert , R. , Russo , J. , Dang , T. and Khalifa , H. E. 2009 . Modeling of the human body to study the personal micro-environment . ASHRAE Transactions , 115 ( 2 ) : 407 - 421 . 

  7. Gao, Naiping, Niu, Jianlei. Transient CFD simulation of the respiration process and inter-person exposure assessment. Building and environment, vol.41, no.9, 1214-1222.

  8. Gupta, Jitendra K., Lin, Chao-Hsin, Chen, Qingyan. Characterizing exhaled airflow from breathing and talking. Indoor air, vol.20, no.1, 31-39.

  9. Hayashi, Tatsuya, Ishizu, Yoshiaki, Kato, Shinsuke, Murakami, Shuzo. CFD analysis on characteristics of contaminated indoor air ventilation and its application in the evaluation of the effects of contaminant inhalation by a human occupant. Building and environment, vol.37, no.3, 219-230.

  10. Khalifa H. E. and Glauser M. N. 2006 . Low-mixing nozzle for personal ventilation . US Provisional Patent Application No. 60/826 829 

  11. Indoor Air 2008, Copenhagen, Denmark Khalifa H. E. 2008 Energy-neutral personal ventilation Khalifa , H. E. , Janos , M. I. and Dannenhoffer , J. F. 2008 . Energy-neutral personal ventilation . Indoor Air 2008, Copenhagen, Denmark , Paper ID159 

  12. Khalifa, H.E., Janos, M.I., Dannenhoffer, J.F.. Experimental investigation of reduced-mixing personal ventilation jets. Building and environment, vol.44, no.8, 1551-1558.

  13. KLEPEIS, NEIL E, NELSON, WILLIAM C, OTT, WAYNE R, ROBINSON, JOHN P, TSANG, ANDY M, SWITZER, PAUL, BEHAR, JOSEPH V, HERN, STEPHEN C, ENGELMANN, WILLIAM H. The National Human Activity Pattern Survey (NHAPS): a resource for assessing exposure to environmental pollutants. Journal of exposure analysis and environmental epidemiology, vol.11, no.3, 231-252.

  14. Length scale propagation along a joint inlet and thermal buoyancy driven flow. Ph.D. thesis Marr D. R. 2007 Marr , D. R. 2007 . Length scale propagation along a joint inlet and thermal buoyancy driven flow. Ph.D. thesis , Syracuse, NY : Syracuse University . 

  15. Melikov, Arsen. Breathing thermal manikins for indoor environment assessment: important characteristics and requirements. European journal of applied physiology, vol.92, no.6, 710-713.

  16. Melikov, A., Kaczmarczyk, J.. Measurement and prediction of indoor air quality using a breathing thermal manikin. Indoor air, vol.17, no.1, 50-59.

  17. Melikov, Arsen K, Cermak, Radim, Majer, Milan. Personalized ventilation: evaluation of different air terminal devices. Energy and buildings, vol.34, no.8, 829-836.

  18. Murakami, S.. Analysis and design of micro-climate around the human body with respiration by CFD. Indoor air, vol.14, no.suppl7, 144-156.

  19. Russo, J.S., Dang, T.Q., Khalifa, H.E.. Computational analysis of reduced-mixing personal ventilation jets. Building and environment, vol.44, no.8, 1559-1567.

  20. Uhde, E., Salthammer, T.. Impact of reaction products from building materials and furnishings on indoor air quality-A review of recent advances in indoor chemistry. Atmospheric environment, vol.41, no.15, 3111-3128.

  21. Weschler, Charles J., Wells, J.R., Poppendieck, Dustin, Hubbard, Heidi, Pearce, Terri A.. Workgroup Report: Indoor Chemistry and Health. Environmental health perspectives : EHP, vol.114, no.3, 442-446.

  22. Zhu, Shengwei, Kato, Shinsuke, Murakami, Shuzo, Hayashi, Tatsuya. Study on inhalation region by means of CFD analysis and experiment. Building and environment, vol.40, no.10, 1329-1336.

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