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顾淦臣. 论土石坝的地震液化验算和坝坡抗震稳定计算[J]. 岩土工程学报, 1981, 3(4): 33-42.
引用本文: 顾淦臣. 论土石坝的地震液化验算和坝坡抗震稳定计算[J]. 岩土工程学报, 1981, 3(4): 33-42.
Gu Gan-chen. Investigation on The Evaluation of Liquefaction and Slope Stability of Earthrock Dams and Foundations against Earthquake[J]. Chinese Journal of Geotechnical Engineering, 1981, 3(4): 33-42.
Citation: Gu Gan-chen. Investigation on The Evaluation of Liquefaction and Slope Stability of Earthrock Dams and Foundations against Earthquake[J]. Chinese Journal of Geotechnical Engineering, 1981, 3(4): 33-42.

论土石坝的地震液化验算和坝坡抗震稳定计算

Investigation on The Evaluation of Liquefaction and Slope Stability of Earthrock Dams and Foundations against Earthquake

  • 摘要: 动力分析法常用于大型土石坝的砂壳和坝基地层的地震液化验算和坝坡抗震稳定计算,拟静力分析法仍广泛用于中小型土石坝的砂壳和坝基地层的抗震稳定计算。但拟静力分析和动力分析至今沿用总应力法。总应力法存在一些缺点,例如:①动剪切强度和动内摩擦角是用动三轴试验按一定破坏标准决定的,而破坏标准有颇大的任意性,还存在着争论;②上述参数仅与坝体和地基的静应力有关,而没有与坝体和地基的动力反应联系起来;③试样的破坏面与坝体和地基内的破坏面不一致。由于这些理由,上述方法计算成果的精度值得怀疑。为了改进分析方法,本文提出验算液化和坝坡抗震稳定的有效应力动力分析法。此外,作者强调研究土石坝的粘土心墙或斜墙地震裂缝的重要性,并对这个问题的研究方法提出建议。

     

    Abstract: The dynamic analysis was usually applied to evaluate liquefaction and slope stability of sandy shell and foundation stratum of large earthrock dams against earthquake, the pseudo-static analysis was much widely applied to evaluate seismic slope stability of sandy shell and foundation stratum of medium or small dams. However, not only pseudo-static analysis but also dynamic analysis were accompanied with total stress method up to date. Nevertheless, the total stress method remains some defects, such as, ①the dynamic shearing strength τdf and dynamic internal friction angle φd determined by dynamic tri-axial test were based upon certain failure criteria, while these criteria are quite arbitrary and arguable; ② these parameters were only related to static stress but not related to dynamic response of the dam and foundation; ③ the direction of rupture plane in the testing sample is not consistent with that in dam and foundation. According to these reasons, the accuracy of the analyzed results seems to be doubtful. In order to improve the analyzing method, an effective stress dynamic analysis method for evaluating liquefaction and for slope stability against earthquake is presented in this paper. Besides, the author emphasizes the importance of studying seismic crack of clayey core or apron, and proposes a procedure for studying this problem.

     

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