波浪作用下黄河口沉积物液化导致的灾害现象

常方强, 贾永刚

常方强, 贾永刚. 波浪作用下黄河口沉积物液化导致的灾害现象[J]. 海洋地质与第四纪地质, 2011, 31(2): 43-48. DOI: 10.3724/SP.J.1140.2011.02043
引用本文: 常方强, 贾永刚. 波浪作用下黄河口沉积物液化导致的灾害现象[J]. 海洋地质与第四纪地质, 2011, 31(2): 43-48. DOI: 10.3724/SP.J.1140.2011.02043
CHANG Fangqiang, JIA Yonggang. DISASTERS CAUSED BY WAVE-INDUCED SEDIMENT LIQUEFACTION AT THE YELLOW RIVER DELTA,CHINA[J]. Marine Geology & Quaternary Geology, 2011, 31(2): 43-48. DOI: 10.3724/SP.J.1140.2011.02043
Citation: CHANG Fangqiang, JIA Yonggang. DISASTERS CAUSED BY WAVE-INDUCED SEDIMENT LIQUEFACTION AT THE YELLOW RIVER DELTA,CHINA[J]. Marine Geology & Quaternary Geology, 2011, 31(2): 43-48. DOI: 10.3724/SP.J.1140.2011.02043

波浪作用下黄河口沉积物液化导致的灾害现象

基金项目: 

国家自然科学基金项目(40876042)

国家"863"攻关项目(2008AA09Z109)

华侨大学高层次人才科研启动项目(09BS621)

详细信息
    作者简介:

    常方强(1980-),男,博士,讲师,从事环境岩土灾害研究及教学工作,E-mail:malcme@126.com

  • 中图分类号: P736.2

DISASTERS CAUSED BY WAVE-INDUCED SEDIMENT LIQUEFACTION AT THE YELLOW RIVER DELTA,CHINA

  • 摘要: 选择黄河口浅滩不同沉积历史的4个典型研究区,取样进行室内物理力学参数测试,现场利用普氏贯入仪测量1m深度内土体强度在二维空间上的分布。然后,建立波浪作用下土体破坏的计算模型,计算50年一遇情况下土体破坏状况,并与调查的浅滩灾害比较。通过研究发现,黄河口浅滩沉积物处于超固结状态,且超固结比随深度增加而减小;浅滩沉积物强度在空间上表现出较强的非均匀性,大王北和刁口地区沉积物的强度要大于新滩和广利港地区的;沉积物在50年一遇波浪荷载下局部液化破坏深度可超过90cm,土体强度的空间非均匀性导致液化破坏后形成灾害现象。计算得到的灾害与现场调查结果具有一定的相似性,测试方法和计算方法可定量分析黄河口浅滩沉积物灾害的形成与特征。
    Abstract: Four areas of different age at the shallow shoal of Yellow River delta were chosen for this study. Some physical and mechanical parameters of sediments were measured indoor,and the strength of sediments at one meter in depth in two dimensions was measured by Proctor Penetrometer in-Situ.Then,a model of soil liquefaction failure was established to calculate the sediment failure under a wave case of 50 years.The calculated geomorphology was compared with the investigated in-Situ.The study reveals that (1)the sediment at the shallow delta is over consolidated,and the over consolidation ratios(OCR)decrease with depth.(2)the sediment strength is very non-uniform,and the strength at Da Wang Bei and Diao Kou is higher than that of Xin Tan,Guang Li port.(3)the sediment liquefaction depth could be beyond 90cm under a wave case of 50 years,and the non-uniformity of sediment strength will cause disasters after liquefaction failure.The landscape established by calculation is similar to the real.The methods of testing and quantitative analysis used by the authors could be extended to the further study of the disasters caused by wave-induced sediment liquefaction.
  • [1] 许国辉,尹晓慧,王秀海,等.浅表土体强度对黄河水下三角洲微地貌形成的控制作用[J].中国海洋大学学报,2007,37(4):657-662.

    [XU Guohui,YIN Xiaohui,WANG Xiuhai,et al. Control action of non-uniformity of surficial stratum on the development of micro-geomorphology of the sub-aqueous Yellow River delta[J].Journal of Ocean University of China,2007,37(4):657-662.]

    [2] 李广雪,庄克琳,姜玉池.黄河三角洲沉积体的工程不稳定性[J].海洋地质与第四纪地质,2000,20(6):21-26.

    [LI Guangxue, ZHUANG Kelin,JIANG Yuchi.Engineering instability of the deposition bodies in the Yellow River delta[J].Marine Geology and Quaternary Geology,2000,20(6):21-26.]

    [3]

    Prior D B,Suhayda J N,Lu N Z,et al.Storm wave reactivation of a submarine landslide[J].Nature,1989,341(7):47-50.

    [4] 周其健,贾永刚,马德翠,等.黄河口潮滩粉土体固结非均匀性研究[J].岩土力学,2006,27(7):1147-1152.

    [ZHOU Qijian, JIA Yonggang,MA Decui,et al.Research of consolidating heterogeneity of silt seabed in Yellow River estuary shore[J]. Rock and Soil Mechanics,2006,27(7):1147-1152.]

    [5] 成国栋,薛春汀.黄河三角洲沉积地质学[M].北京:地质出版社,1997:1-147.[CHENG Guodong,XUE Chunting.Sedimentary Geology of the Yellow River Delta[M].Beijing:Geological Publishing House,1997:1

    -147.]

    [6] 贾永刚,霍素霞,许国辉,等.黄河水下三角洲沉积物强度变化原位测试研究[J].岩土力学,2004,25(6):876-881.

    [JIA Yonggang,HUO Suxia,XU Guohui,et al.Intensity variation of sediments due to wave loading on subaqueous delta of Yellow River[J].Rock and Soil Mechanics,2004,25(6):876-881.]

    [7] 常方强,贾永刚,孟祥梅,等.波浪引起埕岛海域不同区域土体的液化程度[J].海洋地质与第四纪地质,2008,28(2):37-43.

    [CHANG Fangqiang,JIA Yonggang,MENG Xiangmei,et al.The degree of liquefaction of seabed induced by storm wave in Chengdao Sea[J].Marine Geology and Quaternary Geology, 2008,28(2):37-43.]

    [8]

    Nataraja M S,Gill H S.Ocean wave-induced liquefaction analysis[J].Journal of Geotechnical Engineering,Proceedings, ASCE,1983,109(GT4):573-590.

    [9] 林祥,尹宝树,侯一筠,等.辐射应力在黄河三角洲近岸波浪和潮汐风暴潮相互作用中的影响[J].海洋与湖沼,2002,33(6):615-621.

    [LIN Xiang,YIN Shubao,HOU Yijun,et al. Effects of radiation stress in the interaction of coupled wave tide surge in the coastal area of Huanghe delta[J].Oceanolgia et Limnologia Sinca,2002,33(6):615-621.]

    [10]

    Li Pengying.Tidal flat landforms and their scouring-silting changes in the central part of the modern Huanghe River Delta[C]//Contribution to 30th International Geological Congress. Beijing,1996:75-88.

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出版历程
  • 收稿日期:  2010-07-21
  • 修回日期:  2010-09-09

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