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Undrained cyclic triaxial behavior of saturated clays under variable confining pressure

机译:可变围压下饱和黏土的不排水三轴行为

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摘要

A laboratory study on the undrained dynamic behavior of saturated clays in cyclic triaxial tests with a variable confining pressure (VCP tests) is presented. Tests were performed on remolded clayey samples using a dynamic triaxial device where the deviatoric stress and confining pressure can be varied simultaneously. Various cyclic stress paths have been applied on the specimens through varying the ratios or phase differences between the cyclic deviatoric stress and cyclic confining pressure. Specifically, the stress paths used in the present study were designed to simulate the coupling effects of simultaneously varying shear and normal stresses in clays due to earthquakes and other vibration sources. Test results obtained from this study show that the undrained response of saturated clays is strongly influenced by the variation of confining pressure, in terms of pore water pressure, development speed of cyclic strain and magnitude of cyclic strength. It is found that when strong P-waves are propagating in soil layers, VCP tests are more appropriate for the simulation of in situ stress fields than the conventional cyclic triaxial tests with a constant confining pressure (CCP tests).
机译:提出了在可变围压下循环三轴试验(VCP试验)中饱和粘土不排水动力特性的室内研究。使用动态三轴设备对重塑黏土样品进行了测试,其中偏应力和围压可以同时变化。通过改变循环偏应力与循环围压之间的比率或相位差,在样本上施加了各种循环应力路径。具体来说,本研究中使用的应力路径旨在模拟由于地震和其他振动源而使粘土中的剪切应力和法向应力同时变化的耦合效应。从这项研究中获得的测试结果表明,在孔隙水压力,循环应变的发展速度和循环强度的大小方面,饱和粘土的不排水响应受到围压变化的强烈影响。已发现,当强P波在土壤层中传播时,与具有恒定围压的常规循环三轴试验(CCP试验)相比,VCP试验更适合于现场应力场模拟。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2012年第2012期|p.118-128|共11页
  • 作者单位

    Key Laboratory of Soft Soils and Ceoenvironmental Engineering Ministry of Education Zhejiang University. Hangzhou 310027 PR China;

    Department of Civil Engineering Zhejiang University Hangzhou 310027 PR China;

    Key Laboratory of Soft Soils and Ceoenvironmental Engineering Ministry of Education Zhejiang University. Hangzhou 310027 PR China College of Architecture and Civil Engineering Wenzhou University Wenzhou 325035 PR China;

    College of Architecture and Civil Engineering Wenzhou University Wenzhou 325035 PR China;

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