魏定邦,杨强,夏建新. 深海沉积物抗剪强度影响因素及其变化规律[J]. 海洋地质前沿,2021,37(8):28-33. DOI: 10.16028/j.1009-2722.2020.161
    引用本文: 魏定邦,杨强,夏建新. 深海沉积物抗剪强度影响因素及其变化规律[J]. 海洋地质前沿,2021,37(8):28-33. DOI: 10.16028/j.1009-2722.2020.161
    WEI Dingbang, YANG Qiang, XIA Jianxin. FACTORS INFLUENCING SHEAR STRENGTH OF DEEP SEA SEDIMENT AND ITS VARIATION LAW[J]. Marine Geology Frontiers, 2021, 37(8): 28-33. DOI: 10.16028/j.1009-2722.2020.161
    Citation: WEI Dingbang, YANG Qiang, XIA Jianxin. FACTORS INFLUENCING SHEAR STRENGTH OF DEEP SEA SEDIMENT AND ITS VARIATION LAW[J]. Marine Geology Frontiers, 2021, 37(8): 28-33. DOI: 10.16028/j.1009-2722.2020.161

    深海沉积物抗剪强度影响因素及其变化规律

    FACTORS INFLUENCING SHEAR STRENGTH OF DEEP SEA SEDIMENT AND ITS VARIATION LAW

    • 摘要: 深海沉积物土工力学特性是研发深海海底作业装备的依据。利用现有的深海土工力学原位测量数据和取样分析的成果,采用回归分析方法,得到了沉积物物化组成等参数与抗剪强度的相关关系。研究表明:深海沉积物以粉质土、有机黏土为主,具有高含水率、大孔隙比、低密度等特征;随着埋藏深度的增加,深海沉积物的含水率和孔隙比逐渐减少,湿密度与抗剪强度则呈增大趋势;物理参数与抗剪强度之间有较好的相关关系,含水率、密度及孔隙比与抗剪强度的相关性明显,其中,密度与抗剪强度成正比,而含水率、孔隙比与抗剪强度成反比;以含水率、密度和孔隙比为自变量的多变量回归分析方程能更好地表达沉积物物理特性与抗剪强度的相关关系。

       

      Abstract: Based on the existing in-situ measurement data and the results of sampling analysis, the correlation between sediment physicochemical composition and shear strength was identified by using regression analysis method. The results show that the deep-sea sediments are mainly composed of silty soil and organic clay, which are the characterized by high water content, large pore ratio and low density. In addition, the water content and pore ratio of deep-sea sediment gradually decrease with the increase of burial depth, while the wet density and shear strength increase. There is a good correlation between physical parameters and shear strength, water content, density, pore ratio and shear strength. The correlation of shear strength is obvious, in which the density is proportional to the shear strength, while the water content and pore ratio are inversely proportional to the shear strength; th multivariable regression analysis equation with water content, density and pore ratio as independent variables can better express the correlation between physical properties of sediment and shear strength.

       

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