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Hydraulic experiment for equivalent resistance coefficient for inundation simulation model

Authors
Choi, JunwooKwon, Kab KeunKo, Kwang OhYoon, Sung Bum
Issue Date
Oct-2010
Publisher
World Scientific Publishing Co. Pte Ltd
Citation
Proceedings of the 5th International Conference on Asian and Pacific Coasts, APAC 2009, v.3, pp 36 - 42
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
Proceedings of the 5th International Conference on Asian and Pacific Coasts, APAC 2009
Volume
3
Start Page
36
End Page
42
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/40418
DOI
10.1142/9789814287951_0094
Abstract
The equivalent resistance coefficient including the effect of drag caused by obstructions as well as a bottom roughness was investigated. The equivalent resistance coefficient can be utilized for inundation simulations that use relatively larger grids as applying the coefficient into the bottom friction term in the shallow water equation model. In order to investigate the equivalent resistance coefficient, the hydraulic experiment was performed with unsubmerged square piers in an open channel. The piers were arranged with an equal interval along longitudinal and transverse directions, and the water depth of a mean uniform flow was measured for various discharges. The equivalent resistance coefficient n-value was evaluated by applying the measured data to the Manning's equation. A coefficient implicating the interaction effect of piers' drag was estimated based on the experimental results. And as including this drag interaction coefficient a semi-analytical formula of the equivalent resistance coefficient was derived from momentum analysis. The semi-analytical formula was compared with the experimental results. From the comparisons it was found that when the unsubmerged piers were aligned in open channel, the equivalent resistance coefficient was strongly dependent on the interval of piers, and the n-value increased nonlinearly with the water depth. © 2010 World Scientific Publishing Co. Pte. Ltd.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING > 1. Journal Articles

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