KJACR
Korean Journal of
Air-Conditioning and Refrigeration Engineering
SAREK
Contact
ISSN : 1229-6422 (Print)
ISSN : 2465-7611 (Online)
http://journal.auric.kr/kjacr
Mobile QR Code
QR CODE : Korean Journal of Air-Conditioning and Refrigeration Engineering
Korean Journal of Air-Conditioning and Refrigeration Engineering
Korean Journal of Air-Conditioning and Refrigeration Engineering
ISO Journal Title
Korean J. Air-Cond. Refrig. Eng.
Open Access, Monthly
Open Access
Monthly
ISSN : 1229-6422 (Print)
ISSN : 2465-7611 (Online)
Online Submission
Main Menu
Main Menu
최근호
Current Issue
저널소개
About Journal
논문집
Journal Archive
목적 및 범위
Aims and Scope
편집위원회
Editorial Board
윤리규정
Research &
Publication Ethics
논문투고안내
Instructions to Authors
BM
(Business Model)
연락처
Contact Info
논문투고
Online-Submission
KOFST :: The Korean Federation of Science and Technology Societies
Journal Search
Home
Archive
2022-11
(Vol.34 No.11)
10.6110/KJACR.20223411.503
Journal XML
XML
INFO
REF
References
1
World Health Organization (WHO) , 2004, Infection prevention and control of Epidemic-and Pandamic Prone Acute Respiratory Infections in Health Care-WHO Guidelines, https://apps.who.int/iris/bitstream/handle/10665/112656/9789241507134_eng.pdf?sequence=1
URL
2
La Rosa G., Fratini M., Libera S. D., Iaconelli M., Muscillo M., 2013, Viral infections acquired indoors through airborne, droplet or contact transmission, Annali dell'Istituto superiore di sanita, Vol. 49, pp. 124-132
DOI
3
Bahl P., Doolan C., de Silva C., Chughtai A. A., Bourouiba L., MacIntyre C. R., 2020, Airborne or droplet precautions for health workers treating coronavirus disease 2019?, The Journal of infectious diseases
Google Search
4
Stadnytskyi V., Bax C. E., Bax A., Anfinrud P., 2020, The airborne lifetime of small speech droplets and their potential importance in SARS-CoV-2 transmission, Proceedings of the National Academy of Sciences, Vol. 117, No. 22, pp. 11875-11877
DOI
5
Wang J., Du G., 2020, COVID-19 may transmit through aerosol, Irish Journal of Medical Science
DOI
6
CDC , 2013, Interim Guidance on Planning for the use of Surgical Masks and Respirators in Health Care Settings During an Influenza Pandemic Retrieved March 18
Google Search
7
Licina D., Melikov A., Pantelic J., Sekhar C., Tham K. W., 2015, Human convection flow in spaces with and without ventilation: personal exposure to floor-released particles and cough-released droplets, Indoor air, Vol. 25, No. 6, pp. 672-682
DOI
8
Bourouiba L., 2020, Turbulent Gas Clouds and Respiratory Pathogen Emissions: Potential Implications for Reducing Transmission of COVID-19, JAMA, Vol. 323, No. 18, pp. 1837-1838
DOI
9
Liu H., He S., Shen L., Hong J., 2021, Simulation-based study of COVID-19 outbreak associated with air-conditioning in a restaurant, Physics of Fluids, Vol. 33, No. 2, pp. 023301
DOI
10
Shen Y., Li C., Dong H., Wang Z., Martinez L., Sun Z., Xu G., 2020, Community outbreak investigation of SARS-CoV-2 transmission among bus riders in eastern China, JAMA internal medicine, Vol. 180, No. 12, pp. 1665-1671
DOI
11
Kwon K. S., Park J. I., Park Y. J., Jung D. M., Ryu K. W., Lee J. H., 2020, Evidence of long-distance droplet transmission of SARS-CoV-2 by direct air flow in a restaurant in Korea, Journal of Korean Medical Science, Vol. 35, No. 46
DOI
12
ASHRAE, ASHRAE Handbook Fundamentals , 2017, American Society of Heating, Refirigerating, F09 Thermal Comfort, Inc
Google Search
13
Gupta J. K., Lin C. H., Chen Q., 2010, Characterizing exhaled airflow from breathing and talking, Indoor air, Vol. 20, No. 1, pp. 31-39
DOI
14
Chen H., Zhou X., Feng Z., Cao S. J., 2021, Application of polyhedral meshing strategy in indoor environment simulation: Model accuracy and computing time, Indoor and Built Environment
DOI
15
Gilani S., Montazeri H., Blocken B., 2016, CFD simulation of stratified indoor environment in displacement ventilation: Validation and sensitivity analysis, Building and Environment, Vol. 95, pp. 299-313
DOI
16
Hussain S., Oosthuizen P. H., Kalendar A., 2012, Evaluation of various turbulence models for the prediction of the airflow and temperature distributions in atria, Energy and Buildings, Vol. 48, pp. 18-28
DOI
17
Stamou A., Katsiris I., 2006, Verification of a CFD model for indoor airflow and heat transfer, Building and Environment, Vol. 41, No. 9, pp. 1171-1181
DOI
18
Höppe P., 1981, Temperatures of expired air under varying climatic conditions, International Journal of Biometeorology, Vol. 25, No. 2, pp. 127-132
DOI
19
Rudnick S., Milton D., 2003, Risk of indoor airborne infection transmission estimated from carbon dioxide concentration, Indoor air, Vol. 13, No. 3, pp. 237-245
DOI
20
Kim T., Kato S., Murakami S., 2007, New scales for assessing contribution ratio of pollutant sources to indoor air quality, Indoor and Built Environment, Vol. 16, No. 6, pp. 519-528
DOI
21
Lee E.-J., Ryu Y.-H., Lee K.-H., 2007, Simulation and Measurement of Indoor Air Quality in Apartment Housing by CFD, Journal of the Architectural Institute of Korea Planning & Design, Vol. 23, No. 1, pp. 231-238
Google Search
22
Kim C. N., Lee Y. G., Leigh S. B., Kim T. Y., 2007, A prediction of indoor pollutant concentration using method mass transfer coefficient in multi-layered building materials, KIEAE Journal, Vol. 7, No. 5, pp. 53-58
URL
AltStyle
によって変換されたページ
(->オリジナル)
/
アドレス:
モード:
デフォルト
音声ブラウザ
ルビ付き
配色反転
文字拡大
モバイル