2019
DOI: 10.1016/j.oceaneng.2019.04.074
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Investigation on scour scale of piggyback pipeline under wave conditions

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Cited by 6 publications
(2 citation statements)
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“…Zhao and Cheng [22] established numerical models to simulate the scour process around a piggyback pipeline in a steady current, and the results indicated that the gap ratio G/D between two pipelines influences the process of lee-wake shedding, and there is only one vortex street behind the piggyback pipeline if the G/D is less than the critical gap ratio (G/D) cr . Yang et al [23] found the scour depth below a piggyback pipeline is much greater than the case of a single pipeline under the same hydraulic conditions. Zang and Gao [24] conducted an investigation experimentally on local scour around a piggyback pipeline considering the vortex-induced vibration in a steady current.…”
Section: Introductionmentioning
confidence: 97%
“…Zhao and Cheng [22] established numerical models to simulate the scour process around a piggyback pipeline in a steady current, and the results indicated that the gap ratio G/D between two pipelines influences the process of lee-wake shedding, and there is only one vortex street behind the piggyback pipeline if the G/D is less than the critical gap ratio (G/D) cr . Yang et al [23] found the scour depth below a piggyback pipeline is much greater than the case of a single pipeline under the same hydraulic conditions. Zang and Gao [24] conducted an investigation experimentally on local scour around a piggyback pipeline considering the vortex-induced vibration in a steady current.…”
Section: Introductionmentioning
confidence: 97%
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mentioning
confidence: 99%