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Investigation on scour protection of submarine piggyback pipeline

机译:潜艇捎带管道防护的调查

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This paper presents the results of laboratory experiments and numerical simulations to investigate the effect of different piggyback pipeline configuration on the morphology of local seabed scour subject to steady currents. Piggyback pipeline configuration investigated includes the commonly used piggyback pipeline, namely a small pipe attached on the top of large pipe and new form of piggyback pipeline proposed in this study in which a small pipe is attached to the large pipe on the upstream and downstream side, respectively. Pressure gradient, drag coefficient, lift coefficient and scour extent around pipelines are measured and analyzed for a range of pipelines and current conditions. Results show that the vortex strength downstream of the commonly used piggyback pipeline is larger than that for a single as well as the new piggyback pipeline under the same condition. This new type piggyback pipeline can effectively reduce the depth and width of the scour hole. In particular, when the ratio of the small pipe diameter over the large pipe diameter is greater than 0.3, little scour under this new type piggyback pipeline occurs for the test conditions. The bed topography downstream of the pipe has also been altered to favor the backfill.
机译:本文介绍了实验室实验的结果和数值模拟,以研究不同背驮式管道配置对稳定电流局部海底冲刷形态的影响。捎带管道配置包括常用的肩扛管道,即附着在大管顶部的小管,并在本研究中提出的新形式的肩扛管道,其中小管子连接到上游和下游侧的大管道上,分别。测量并分析管道周围的压力梯度,拖曳系数,升力系数和血液范围,并分析一系列管道和当前条件。结果表明,常用的肩扛管道下游的涡流强度大于单一的涡流,以及在相同条件下的新型背驮式管道。这种新型搭载管道可以有效地降低冲刷孔的深度和宽度。特别是,当小管道直径的小管道直径的比率大于0.3时,在这种新型背驮式管道下的小冲刷发生在测试条件下。管道下游的床上地形也被改变为有利于回填。

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