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Impact of Shear Stress on Strain and Pore Water Pressure Behavior of Intact Soft Clay Under Principal Stress Rotation

机译:主应力旋转作用下剪应力对完整软黏土应变和孔隙水压力特性的影响

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摘要

The effect of shear stress on strain development and pore water accumulation resulting from principal stress rotation tests on intact Hangzhou soft clay using a Zhejiang University hollow cylinder apparatus (ZJU-HCA) is reported. Different types of tests were designated, including a shearing test along the fixed principal stress direction, a pure rotation test, and both clockwise and anti-clockwise rotation tests. The mean principal stress was kept constant in all tests. The intermediate principal stress coefficient (b) was set to 0.5. The pore pressure coefficient, deduced using a double yield surface theory, revealed that the volume yield surface function was not affected by the rotation of the principal stress axes. The pore water pressure in the fixed principal stress direction test and in the pure rotation test was shown to be mainly controlled by the shear stress level. As the results revealed that the anticlockwise rotation would have a higher effect on pore water pressure than clockwise rotation, the pore water pressure generated in the clockwise rotation test was relatively small. Because b was set to 0.5, the radial strain was very small. The development of the axial strain was symmetrical to the circumferential strain, which coincided with the horizontal symmetry of the axial stress and circumferential stress. Both the shear stress level and rotation angle have a pronounced effect on strain development. When soil subjected to pure principal stress rotation under the conditions of high stress levels, large strains would be expected and any underestimation will lead to insecurity. If the specimen experienced a preceding rotation, its influence on the strain development in the subsequent rotation was significant. The variation of octahedral shear stiffness G_(oct) with rotation angle also demonstrated the deterioration of the preceding rotation in the following rotation.
机译:报道了使用浙江大学空心圆柱仪(ZJU-HCA)对完整的杭州软土进行主应力旋转试验后,剪应力对应变发展和孔隙水积聚的影响。指定了不同类型的测试,包括沿固定主应力方向的剪切测试,纯旋转测试以及顺时针和逆时针旋转测试。在所有测试中,平均主应力均保持恒定。中间主应力系数(b)为0.5。使用双重屈服面理论推导的孔隙压力系数表明,体积屈服面函数不受主应力轴旋转的影响。固定主应力方向试验和纯旋转试验中的孔隙水压力主要受剪切应力水平控制。结果表明,逆时针旋转对孔隙水压力的影响要大于顺时针旋转,因此在顺时针旋转试验中产生的孔隙水压力相对较小。因为b设置为0.5,所以径向应变非常小。轴向应变的发展与圆周应变是对称的,这与轴向应力和圆周应力的水平对称一致。剪切应力水平和旋转角度都对应变发展有显着影响。当土壤在高应力水平下承受纯主应力旋转时,会产生很大的应变,任何低估都会导致不安全。如果标本经历了先前的旋转,则其对随后旋转中的应变发展的影响很大。八面体剪切刚度G_(oct)随旋转角度的变化也证明了在随后的旋转中先前旋转的恶化。

著录项

  • 来源
    《Geotechnical testing journal》 |2014年第3期|447-462|共16页
  • 作者

    Zhou Jian; Xu Changjie;

  • 作者单位

    Research Center of Coastal and Urban Geotechnical Engineering, Zhejiang University, Hangzhou 310058, China;

    Research Center of Coastal and Urban Geotechnical Engineering, Zhejiang University, Hangzhou 310058, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    principal stress rotation; shear stress; pore pressure; strain; soft clay;

    机译:主应力旋转剪应力孔隙压力应变;软黏土;

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