Analysis of the mechanism of seabed liquefaction induced by waves and related seabed protection

被引:0
作者
Yu Huang
Yangjuan Bao
Min Zhang
Chun Liu
Ping Lu
机构
[1] Tongji University,Department of Geotechnical Engineering, College of Civil Engineering
[2] Tongji University,Key Laboratory of Geotechnical and Underground Engineering of the Ministry of Education
[3] Tongji University,College of Surveying and Geo
来源
Natural Hazards | 2015年 / 79卷
关键词
Seabed liquefaction; Action of waves; Mechanism; Factors of liquefaction; Remedial measures against liquefaction;
D O I
暂无
中图分类号
学科分类号
摘要
As one of the most serious offshore hazards, wave-induced seabed liquefaction can trigger massive landslides on the ocean floor and pose a great threat to submarine structures (e.g., coastal levees, oil platforms, drilling platforms and seabed pipelines). In view of the complexity and practicability of the problem, this study systematically analyzes the mechanism, factors and remedial measures of liquefaction. Compared with seismic liquefaction, waved-induced liquefaction varies in many respects, such as the load pattern, loading position, drainage condition and characteristics of pore water pressure, resulting in different mechanisms of seabed liquefaction under the action of waves. Both wave characteristics and soil characteristics, including the wave period, water depth, wave height, degree of saturation, seabed thickness, permeability and stress history, affect the degree of seabed liquefaction. Moreover, to ensure the sustainable development of the ocean, a series of remedial measures against liquefaction, including evaluation of the liquefaction potential, management of disaster prevention, ocean monitoring and forecasting, are proposed.
引用
收藏
页码:1399 / 1408
页数:9
相关论文
共 142 条
  • [1] Breul P(2008)On site characterization and air content evaluation of coastal soils by image analysis to estimate liquefaction risk Can Geotech J 45 1723-1732
  • [2] Haddani Y(2009)Accurate prediction of wave-induced seabed liquefaction at shallow depths using multi-artificial neural networks J Coast Res 56 927-931
  • [3] Gourves R(2012)In-situ test to study silt liquefaction at the subaqueous delta of Yellow River China Civ Eng J 45 121-126
  • [4] Cha DH(2004)3-D liquefaction potential analysis of seabed at nearshore area J Mar Sci Technol 12 141-151
  • [5] Zhang H(2004)Effect of cyclic loading frequency on undrained behaviors of undisturbed marine clay Ocean Eng 18 643-651
  • [6] Blumenstein M(2011)Analysis of wave-induced liquefaction in seabed deposits of silt China Ocean Eng 25 31-44
  • [7] Jeng DS(2013)Pore-water pressure development caused by wave-induced cyclic loading in deep porous formation Int J Geomech 13 65-68
  • [8] Chang FQ(2005)Constitutive modeling of gassy sand behavior Can Geotech J 42 812-829
  • [9] Jia YG(2014)Simplified approximation of wave-induced liquefaction in a shallow porous seabed Int J Geomech 14 1-5
  • [10] Chang CH(2001)Mechanism of the wave-induced seabed instability in the vicinity of a breakwater: a review Ocean Eng 28 537-570