DEVELOPMENT OF UNSTEADY INDOOR CONTAMINANT CONCENTRATION DISTRIBUTIONS FOR RISK ASSESSMENT OF HIGH CONCENTRATION AND SHORT-TERM EXPOSURE (PART 1): FUNDAMENTAL EXPERIMENTS USING SMALL GLASS CHAMBER AND VALIDATION OF PREDICTION ACCURACY
Author:
Affiliation:
1. Technical Research Institute, Obayashi Corporation
2. Interdisciplinary Graduate School of Engineering Science, Kyushu Univ.
Publisher
Architectural Institute of Japan
Subject
Environmental Engineering
Link
https://www.jstage.jst.go.jp/article/aije/85/778/85_985/_pdf
Reference22 articles.
1. 1) Ministry of Health, Labor and Welfare : rodoanzeneiseihonokaiseinitsuite (About a change in occupational safety and health law), https://www.mhlw.go.jp/stf/seisakunitsuite/bunya/0000094015.html, (accessed 2020-1-15) (in Japanese) 厚生労働省:労働安全衛生法の改正について(ラベル・リスクアセスメント関係), https://www.mhlw.go.jp/stf/seisakunitsuite/bunya/0000094015.html, (参照2020-1-15)
2. 2) Alicia Murga, Yusuke Sano, Yoichi Kawamoto, Kazuhide Ito : Integrated analysis of numerical weather prediction and computational fluid dynamics for estimating cross-ventilation effects on inhaled air quality inside a factory, Atmospheric Environment, Vol. 167, pp. 11-22, 2017.1
3. 3) Alicia Murga, Sung-Jun Yoo and Kazuhide Ito : Multi-stage downscaling procedure to analyze the impact of exposure concentration in a factory on a specific worker through CFD, Indoor and Built Environment, Vol. 27, Issue 4, pp. 486-498, 2018.4
4. 4) Sung-Jun Yoo and Kazuhide Ito : Assessment of Transient Inhalation Exposure using in silico Human Model integrated with PBPK - CFD Hybrid Analysis, Sustainable Cities and Society, Vol. 40, pp. 317-325, 2018.7
5. 5) Sung-Jun Yoo and Kazuhide Ito : Numerical Prediction of Tissue Dosimetry in Respiratory Tract using Computer Simulated Person integrated with physiologically based pharmacokinetic (PBPK)-computational fluid dynamics (CFD) Hybrid Analysis, Indoor and Built Environment, Vol. 27, Issue7, pp. 877-889, 2018.8
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