INVESTIGATION OF CORRECTION FACTOR OF FLOAT METHOD CONSIDERING WATER SURFACE VELOCITY DISTIBUTUION CHACTERISTICS AND INTERNAL STRUCTURE OF TURBULENT IN OPEN CHANNEL FLOW

Author:

WATANABE Katsutoshi1,UNE Hirotaka1,ASAI Kouji2

Affiliation:

1. 徳山工業高等専門学校 土木建築工学科

2. 山口大学 大学院創成科学研究科

Publisher

Japan Society of Civil Engineers

Reference13 articles.

1. 1) (社)日本河川協会編:改訂新版建設省河川砂防技術基準(案)同解説 調査編,pp. 33-58, 1997.[ Edited by Japan River Association: Revised New Edition Ministry of Construction River Sabo Technical Standards (Draft) Commentary Survey, pp. 33-58, 1997.]

2. 2) 山口高志,新里邦生:電波流速計による洪水流量観測,土木学会論文集,No. 497/II-28,pp. 41-50,1994.[Yamaguchi, T and Niizato, K:Flood discharge observation using radio current meter, Transaction of Japan Society of Civil Engineers, No. 497/II-28,pp. 41-50,1994.]

3. 3) Fujita, I., Watanabe, H., and Tsubaki, R. : Development of a non intrusive and efficient flow monitoring technique:The space-time image velocimetry (STIV), International Journal of River Basin Management, Vol. 5, No. 2, pp. 105-114, 2011.

4. 4) Fujita, I., Shibano, T., and Tani, K. : Application of masked two dimensional Fourier spectra for improving the accuracy of STIV based river surface flow velocity measurements, Measurement Science and Technology, Vol. 31, 094015, 2020.

5. 5) 藤田一郎, 渡辺健, 井口真生子, 長谷川誠:深層学習を用いたSTIV解析の高性能化, 土木学会論文集 B1(水工学), Vol. 76, No. 2, pp. p. I_991-I_996,2020.[Fujita, I., Watanabe, K., Iguchi, M.and Hasegwa, M.:Impovement of STIV technique by using deep learning, Transaction of Japan Society of Civil Engineers, B1 (Hydraulic Engineering), Vol. 76, No. 2, pp. p. I_991-I_996, 2020.]

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