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刘学增, 周敏. 弹塑性动态增量反分析及其在高边坡中的应用[J]. 岩土工程学报, 2010, 32(6).
引用本文: 刘学增, 周敏. 弹塑性动态增量反分析及其在高边坡中的应用[J]. 岩土工程学报, 2010, 32(6).
Elastoplastic staged incremental back analysis and its application to high slopes[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(6).
Citation: Elastoplastic staged incremental back analysis and its application to high slopes[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(6).

弹塑性动态增量反分析及其在高边坡中的应用

Elastoplastic staged incremental back analysis and its application to high slopes

  • 摘要: 针对浙江台缙高速S9松散体高边坡,结合边坡施工过程对表面位移进行了监测。应用每一级边坡的表面位移量测信息,包括水平位移和垂直位移,采用弹塑性位移反分析反演某一岩体的弹性模量和内摩擦角,利用反演得到弹性模量和内摩擦角计算预测下一级边坡开挖可能引起的边坡变形。由于边坡表面位移测点都是在边坡开挖后埋设的测点,测得表面位移均为下级边坡开挖引起的增量位移,因此,采用了结合施工过程的增量位移反分析方法。计算结果表明,上级边坡的同一测点的水平位移的预测值和实测值吻合的较好,垂直位移的预测值和实测值误差相对较大。

     

    Abstract: Surface displacement is monitored during the construction process of Taizhou-Jinyun highway S9 loose high slope in Zhejiang Province. The elastic modulus and internal friction angle of rock are back-calculated by elastoplastic displacement back analysis with surface displacement of slope, including horizontal and vertical displacement, which are employed to predict the surface displacement from the next excavation of slope. As the surface measuring points are set after the excavation of the slope, the measured displacement is incremental displacement resulting from the excavation of lower slope. Therefore, the method of incremental displacement back analysis is used. The calculated results of cases show that the predicted horizontal displacement at the same measuring point set in the upper slope agrees with the measured value, and that the predicted vertical value has relatively large errors compared with the measured one.

     

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