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Cyclic shearing and liquefaction of soil under irregular loading: an incremental model for the dynamic earthquake-induced deformation

机译:不规则荷载下土壤的循环剪切和液化:动态地震诱发变形的增量模型

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The paper presents a mathematical model for the deformation of soil under irregular cyclic loading in the simple-shear conditions. The model includes the possible change in the effective pressure in saturated soil due to the cyclic shearing, the reciprocal influence of the effective pressure on the response of the soil to the, shear loading, and the pore pressure dissipation due to the seepage of the pore fluid. The hysteresis curves for the strain-stress relationship are constructed in such a way that they produce both the required backbone curve and the required damping ratio as functions of the strain amplitude. At the same time, the approach enables the constitutive functions involved in the model to be specified in various ways depending on the soil under study. The constitutive functions can be calibrated independently of each other from the conventional cyclic shear tests. The constitutive model is incorporated in the boundary value problem for the dynamic site response analysis of level ground. A numerical solution is presented for the dynamic deformation and liquefaction of soil at the Port Island site during the 1995 Hyogoken-Nambu earthquake.
机译:提出了在简单剪切条件下不规则循环荷载作用下土体变形的数学模型。该模型包括循环剪切作用下饱和土壤中有效压力的可能变化,有效压力对土壤响应,剪力的倒数影响以及由于孔隙渗漏引起的孔隙压力消散体液。构造应变-应力关系的磁滞曲线,使其产生所需的主干曲线和所需的阻尼比,作为应变幅度的函数。同时,该方法可以根据所研究的土壤以各种方式指定模型中涉及的本构函数。本构函数可以与常规的循环剪切测试相互独立地进行校准。本构模型被纳入边值问题,用于水平地面的动态场地响应分析。提出了1995年兵库县-南武地震期间港岛站点土壤动态变形和液化的数值解。

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