journal article Jan 01, 2020

Observation of aerosol particle capturing behavior near gas-liquid interface

View at Publisher Save 10.1299/mej.19-00539
Topics

No keywords indexed for this article. Browse by subject →

References
6
[1]
Ardon-Dryer, K., et al., Laboratory studies of collection efficiency of sub-micrometer aerosol particles by cloud droplets on a single-droplet basis, Atmospheric Chemistry and Physics, Vol.15 (2015), pp.9159-9171.
[2]
Girault, N., et al., Insights into iodine behaviour and speciation in the Phebus primary circuit, Annals of Nuclear Energy, Vol.61 (2013), pp.143-156.
[3]
Hinds, W. C., Aerosol Technology (1985), Inoue Shoin, inc., Tokyo, pp.168-172 (in Japanese).
[4]
Horiguchi, N., et al., Numerical simulation of two-phase flow behavior in Venturi scrubber by interface tracking method, Nuclear Engineering and Design, Vol.310 (2016), pp.580-586.
[5]
Tohoku Electric Power Co., Inc., Pressure relief devices in the reactor containment vessel in Onagawa nuclear power plant unit 2 (the filtered vent system in the reactor containment vessel) (2016), pp.45-75 (in Japanese) (https://www.nsr.go.jp/data/000161017.pdf September 19, 2017).
[6]
Ueoka, Y., Study on the Venturi scrubber (1st report) Analysis of the collection efficiency at throat, Transactions of the Japan Society of Mechanical Engineers, Vol.23 (1957), pp.309-313 (in Japanese). 10.1299/kikai1938.23.309
Metrics
2
Citations
6
References
Details
Published
Jan 01, 2020
Vol/Issue
7(3)
Pages
19-00539-19-00539
Cite This Article
Shinichiro UESAWA, Hiroyuki Yoshida (2020). Observation of aerosol particle capturing behavior near gas-liquid interface. Mechanical Engineering Journal, 7(3), 19-00539-19-00539. https://doi.org/10.1299/mej.19-00539