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Investigation on scour scale of piggyback pipeline under wave conditions

机译:波浪条件下背负式管道冲刷规模研究

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Laboratory experiments are presented to investigate the effect of different piggyback pipeline configurations on the morphology of local scour under wave conditions. Scour depth and width around the pipelines under regular and irregular waves are measured and analyzed for a range of pipeline and wave conditions; such as the spacing between two pipes (G), gap between the main pipe and seabed (e), pipe diameter (D), wave height (H) and period (T). Experimental results reveal that both the scour depth and width around piggyback pipeline is much larger than those around single pipe under the same wave conditions. Scour depth increases with the increase of the Keulegan-Carpenter (KC) number and decreases with increase of G and e. When e exceeds 0.5D, scour depth tends to approach 0. When spacing G is greater than 0.4D, the destabilization from small pipe to large one is greatly reduced, resulting in scour depth around piggyback pipeline being close to that around single pipe. Similar to scour depth, scour width broadens with the increase of KC number increasing and decreases with the increase of G. Experiments also show that the effect of e on scour depth is greater than that of G under the same test conditions, while their impact on scour width is opposite. Furthermore, scour width under irregular waves is extended slightly compared with regular wave for otherwise the identical conditions.
机译:提出了实验室实验,以研究波浪条件下不同背piggy式管道配置对局部冲刷形态的影响。测量并分析了规则波和不规则波时管道周围的冲刷深度和宽度,以分析一系列管道和波状条件;例如两条管道之间的间距(G),主管与海底之间的间隙(e),管道直径(D),波高(H)和周期(T)。实验结果表明,在相同波浪条件下,背piggy式管道的冲刷深度和宽度均比单个管道的冲刷深度和宽度大。冲刷深度随Keulegan-Carpenter(KC)数的增加而增加,随G和e的增加而减小。当e超过0.5D时,冲刷深度趋向于接近0。当间距G大于0.4D时,从小管到大管的失稳将大大减少,从而导致背piggy式管道周围的冲刷深度接近单管附近的冲刷深度。与冲刷深度相似,冲刷宽度随着KC值的增加而变宽,并随着G的增加而减小。实验还表明,在相同的试验条件下,e对冲刷深度的影响大于G的冲刷深度。冲刷宽度是相反的。此外,在其他条件相同的情况下,不规则波的冲刷宽度与规则波相比略有扩大。

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