STOKES NUMBER DEPENDENCY OF PARTICLE IMPACTION EFFICIENCY ON CYLINDER SURFACE UNDER HIGH REYNOLDS NUMBER CONDITION
Author:
Affiliation:
1. 電力中央研究所 気象・流体科学研究部門
2. 株式会社電力計算センター 数理解析部
Publisher
Japan Society of Civil Engineers
Link
https://www.jstage.jst.go.jp/article/jscejj/79/15/79_22-15047/_pdf
Reference20 articles.
1. 1) Suto, H., Hattori, Y., Hirakuchi, H. , Kihara, N. and Nakashiki, Y.: Computational fluid dynamics simulation and statistical procedure for estimating wide-area distributions of airborne sea salt considering local ground conditions, Structure Infrastructure Eng., Vol. 13, pp.1359-1371, 2017.
2. 2) Suto, H., Kihara, N., Hattori, Y. and Hirakuchi, H.: Prediction of surf-zone and open-ocean airborne sea-salt spatial distribution via computational fluid dynamics and statistical method, Corrosion Eng. Sci. Tech., Vol. 56, pp.392-400, 2021.
3. 3) Noguchi, K., Shirato, H. and Yagi, T.: Numerical evaluation of sea salt amounts deposited on bridge girders, J. Bridge Eng., 2017.
4. 4) Obata, M., Guotai, L., Watanabe, Y. and Goto, Y.: Numerical simulation of adhesion of sea-salt particles on bridge girders, Structure Infrastructure Eng., Vol. 10, pp.398-408, 2014.
5. 5) Onishi, R., Matsuda, K., Suto, H., Hattori, Y., Hirakuchi, H., Matsunami, S., Yagyu, S., Shinohara, T. and Katayama, H.: High-resolution prediction for the amount of airborne sea salt by multi-scale weather simulation, Materials Trans., Vol. 62, pp.1785-1790, 2021.
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