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Comparison of dynamic characteristics of the silty clay before and after freezing and thawing under the subway vibration loading

机译:地铁振动荷载作用下粉质黏土冻融前后动力特性比较

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The long-term deformation of soft clay under the subway vibration loading has been paid more attention by researchers and engineers recently. More than 14 subway lines are in operation and some new lines are being built in Shanghai. Most of the subway tunnel are buried in the soft clay layer and the by-pass of tunnel is constructed by the artificial freezing method. In this paper, cyclic triaxial tests for the silty clay of layer No. 5 about 10 m in depth in Shanghai were conducted to study the dynamic behaviors of the silty clay before and after freezing and thawing. Based on the elastic-plastic Iwan model, the conversion between H-D model and M-D model was discussed. The cyclic triaxial tests data were fitted by the two models and the applicability of the backbone curve models to Shanghai soft clay was analyzed. Considering the influence of number of vibration, the frequency and the amplitude of deviator stress, the dynamic behaviors of the silty clay before and after freezing and thawing were compared in details through analyzing the excess pore water pressure and the axial strain development curves. The results show that the freezing-thawing clay can produce up to 26.7% larger strain and 53% higher excess pore pressure than the undisturbed clay under the same test conditions. The rates of increasing of the axial strain and the excess pore pressure decrease gradually with the increase of the number of vibration. The lower the frequency and the larger the amplitude of deviator stress are, the more energy transferred to soil is and the earlier the inflection points of deformation appear. (C) 2015 Elsevier B.V. All rights reserved.
机译:地铁振动荷载作用下软黏土的长期变形近来受到研究人员和工程师的关注。上海有超过14条地铁线正在运营,一些新的地铁线正在建设中。大部分地铁隧道都埋在软土层中,而隧道的旁路则采用人工冻结的方法。本文通过对上海5号深度约10 m的粉质黏土进行循环三轴试验,研究了粉质黏土在冻融前后的动力特性。基于弹塑性Iwan模型,讨论了H-D模型和M-D模型之间的转换。用这两个模型拟合了循环三轴试验数据,并分析了主干曲线模型对上海软土的适用性。考虑振动次数,偏应力频率和幅度的影响,通过分析多余的孔隙水压力和轴向应变发展曲线,详细比较了粉质黏土在冻融前后的动力学行为。结果表明,在相同的测试条件下,冻融黏土比未搅动的黏土产生的应变大26.7%,超孔隙压力高53%。随着振动次数的增加,轴向应变的增加速率和过大的孔隙压力逐渐减小。频率越低,偏应力的幅度越大,传递给土壤的能量越多,变形的拐点越早出现。 (C)2015 Elsevier B.V.保留所有权利。

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