饱和海床土渗流-应力耦合损伤及液化破坏规律(Ⅰ)  被引量:2

Study on seepage-stress coupling damage and liquefaction failure regularity of saturated seabed soil(Ⅰ)

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作  者:刘红军[1,2] 李洪江[1,2] 王虎[1,2] 吕小辉[2] 

机构地区:[1]中国海洋大学海洋环境与生态教育部重点实验室,山东青岛266100 [2]中国海洋大学环境科学与工程学院,山东青岛266100

出  处:《哈尔滨工程大学学报》2014年第11期1320-1326,共7页Journal of Harbin Engineering University

基  金:国家自然科学基金资助项目(41072216);山东省科技攻关资助项目(2014GGX104007)

摘  要:基于重正化群理论在临界突变问题分析中的优势和岩土体的自相似特性,从海床土微观结构入手,引入三维颗粒堆积模型来描述孔隙渗流临界行为,找到了土体渗流与临界孔隙率的关系,给出了海床介质孔隙率与渗流发生的物理判别准则。在土体二元介质理论基础上,分析了饱和海床土宏观液化与微观强度的定量关系,构建了海床土体微单元破坏的重正化群模型,并对结构面断裂损伤临界概率进行了研究。研究结果表明:海床土液化是渗流-应力耦合场共同作用的结果,微单元体断裂损伤导致液化贯通带形成,进而引起海床土的宏观液化,液化贯通带的提出对研究海床土液化破坏规律有极其重要的意义。With the advantage of renormalization group theory in critical mutation analysis and the self-similar characteristics of soil materials, the critical behavior of pore percolation and the relationships between seepage and critical porosity were found. In this paper, the critical behavior is described by the three-dimensional particle packing model from the microstructure of seabed soil. Specifically, the physical criterion is given to judge the seepage conditions associated with seabed medium porosity. Based on the binary medium theory, the quantitative relationship of macro-liquefaction and micro-strength of saturated seabed soil damage renormalization group model of seabed soil is built, is analyzed. At the same time, the microbalance unit and fracture damage critical probability of structural surface is studied. The results showed that the seabed soil liquefaction results from the interaction of seepage and stress coupling field. The formation of liquefied rupture band as a critical state is resulted from fracture damage of the micro unit cell, which leads to the macroscopic liquefaction of seabed soil. The soil liquefied rupture band method is important for the study of liquefaction failure regularity of saturated seabed soil.

关 键 词:重正化群 自相似 渗流 断裂损伤 液化带 渗流-应力耦合 

分 类 号:TU435[建筑科学—岩土工程]

 

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