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Research paper

Roughness effect on turbulent flow structure beneath a simulated ice jam

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Pages 238-249 | Received 09 Aug 2017, Accepted 04 Mar 2018, Published online: 28 Jun 2018

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Read on this site (2)

Baafour Nyantekyi-Kwakye, Tanzim Ahmed & Karen Dow. (2023) Effect of leading-edge geometry on flow beneath a simulated ice block. Journal of Hydraulic Research 61:6, pages 910-919.
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Dario A. B. Sirianni, Christopher Valela, Colin D. Rennie, Ioan Nistor & Husham Almansour. (2022) Effects of developing ice covers on bridge pier scour. Journal of Hydraulic Research 60:4, pages 645-655.
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Articles from other publishers (6)

Rui Hu & Xuelai Zhang. (2023) Analysis of three ice melting methods in supercooled water ice-making system. Journal of Energy Storage 64, pages 107255.
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Xingjun FangKaren DowMark F. TachieMalenchak JarrodShuangming Wang. (2023) Flow Characteristics beneath Ice Blocks with Smooth and Rough Undersurfaces. Journal of Hydraulic Engineering 149:4.
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Andrew Murray, Ebenezer Essel & Karen Dow. (2022) Particle image velocimetry investigation of void seepage through a simulated ice jam. Cold Regions Science and Technology 196, pages 103493.
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C. Liu, Y. Li, Z. Zhou & P. Wiśniewski. (2022) Effect of Cascade Surface Roughness on Boundary Layer Flow Under Variable Conditions. Frontiers in Energy Research 9.
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J.J. van der Sanden, H. Drouin & T. Geldsetzer. (2021) An automated procedure to map breaking river ice with C-band HH SAR data. Remote Sensing of Environment 252, pages 112119.
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Baafour Nyantekyi-KwakyeTanzim AhmedShawn P. ClarkMark F. TachieKaren Dow. (2019) Effect of discharge and upstream jam angle on the flow distribution beneath a simulated ice jam. Canadian Journal of Civil Engineering 46:5, pages 413-423.
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