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Original Articles

Experimental Study of Local Scour Beneath Two Tandem Pipelines in Steady Current

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Pages 1750002-1-1750002-22 | Received 24 Jan 2016, Accepted 10 Oct 2016, Published online: 10 Jan 2018

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Qi Zhang, Xiang-Lian Zhou, Jian-Hua Wang & Wan-Ling Li. (2019) Dynamic interaction between two parallel submarine pipelines considered vortex-induced vibration and local scour. Marine Georesources & Geotechnology 37:5, pages 609-621.
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Articles from other publishers (8)

Ke Hu, Xinglan Bai & Murilo A. Vaz. (2023) Numerical Simulation on the Local Scour Processing and Influencing Factors of Submarine Pipeline. Journal of Marine Science and Engineering 11:1, pages 234.
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Saeed Salehi & Amir H. Azimi. (2022) Effects of spoiler and piggyback on local scour under single and twin submerged pipes. Ocean Engineering 261, pages 112137.
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Zhiyong Zhang, Yakun Guo, Yuanping Yang, Bing Shi & Xiuguang Wu. (2021) Scale Model Experiment on Local Scour around Submarine Pipelines under Bidirectional Tidal Currents. Journal of Marine Science and Engineering 9:12, pages 1421.
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Jun Huang, Guang Yin, Muk Chen Ong, Dag Myrhaug & Xu Jia. (2021) Numerical Investigation of Scour Beneath Pipelines Subjected to an Oscillatory Flow Condition. Journal of Marine Science and Engineering 9:10, pages 1102.
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Yuzhu Li, Muk Chen Ong, David R. Fuhrman & Bjarke Eltard Larsen. (2020) Numerical investigation of wave-plus-current induced scour beneath two submarine pipelines in tandem. Coastal Engineering 156, pages 103619.
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Dan Hu, Wen Tang, Liang Sun, Fen Li, Xiangying Ji & Zheng Duan. (2019) Numerical simulation of local scour around two pipelines in tandem using CFD–DEM method. Applied Ocean Research 93, pages 101968.
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Shengtao Du & Bingchen Liang. (2019) Comparisons of Local Scouring for Submerged Square and Circular Cross-Section Piles in Steady Currents. Water 11:9, pages 1820.
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Qi Zhang, Xiang-Lian ZhouXiao-He Xia, Wan-Ling Li & Shuo Zhang. (2019) Coupling Effect of Vortex-Induced Vibration of a Submarine Pipeline and Local Scour Under Steady Current. Journal of Offshore Mechanics and Arctic Engineering 141:4.
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