4.7 Article

Laboratory experimental study of ocean waves propagating over a partially buried pipeline in a trench layer

期刊

OCEAN ENGINEERING
卷 173, 期 -, 页码 617-627

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.oceaneng.2019.01.022

关键词

Wave-seabed-pipeline interaction; Soil response; Trenched pipeline; Partially buried

资金

  1. National Key research and development program of China [2017YFC1404200]
  2. research grants of Jiangsu, China [BK20150804]
  3. marine renewable energy research project of State Oceanic Administration of China [GHME2015GC01]
  4. Open Foundation of State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Hohai University, China [2016491011]
  5. UK Royal Academy of Engineering the Distinguished Visiting Fellowship [DVF1718-8-7]
  6. Fundamental Research Funds for the Central Universities, Hohai University, China [2016B42514]

向作者/读者索取更多资源

Seabed instability around a pipeline is one of the primary concerns in offshore pipeline projects. To date, most studies focus on investigating the wave/current-induced response within a porous seabed around either a fully buried pipeline or a thoroughly exposed one. In this study, unlike previous investigations, a series of comprehensive laboratory experiments are carried out in a wave flume to investigate the wave-induced pore pressures around a partially embedded pipeline in a trench layer. Measurements show that the presence of the partially buried pipeline can significantly affect the excess pore pressure in a partially backfilled trench layer, which deviates considerably from that predicted by the theoretical approach. The morphology of the trench layer accompanied with the backfill sediments, especially the deeper trench and thicker backfill (i.e., b >= 1D, e >= 0.5D), provides a certain degree of resistance to seabed instability. The amplitude of excess pore pressure around the trench layer roughly exhibits a left-right asymmetric distribution along the periphery of the pipeline, and decays sharply from the upper layer of the trench to the lower region. Deeper trench depth and thicker buried layer significantly weaken the pore-water pressures in the whole trench area, thus sheltering and protecting the submarine pipeline against the transient seabed liquefaction.

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