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A generalized plasticity model to predict behaviors of the concrete-faced rock-fill dam under complex loading conditions

机译:复杂载荷条件下混凝土面板堆石坝行为的通用塑性模型

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摘要

This research developed an elastoplastic model within the framework of the generalized plasticity theory, to predict behaviors of coarse-grained soils under complex loading conditions. The stress dilatancy relationship was validated using test results of several kinds of coarse-grained soils; loading direction was proposed considering the strength properties of the coarse-grained soils (i.e., stress ratio at the failure decreases with the increase of the mean stress); and modifications were also made to the plastic modulus of the basic model, so that greatly reduces the difficulty in determining the model parameters. In order to simulate the soil behaviors under cyclic loading conditions, reloading and unloading plastic moduli were also respectively defined. The proposed model was then evaluated using test results of the Granite rock-fill in different stress paths (including both monotonic loading and cyclic loadings). Finally, the proposed model was used to analyze the deformation of the Shuibuya Concrete-Faced Rock-fill Dam. Model parameters of the main rock-fill and secondary rock-fill were back analyzed from large-scale plate-loading tests. The numerical results were also compared with the in situ measurements. Results showed that the proposed model can give reasonable predictions of the dam behaviors during the construction and full storage period; and permanent deformation that was caused by fluctuations of water level can also be predicted.
机译:这项研究在广义可塑性理论的框架内开发了一种弹塑性模型,以预测复杂载荷条件下粗粒土的行为。利用几种粗粒土的试验结果验证了应力膨胀关系。考虑到粗粒土的强度特性(即破坏时的应力比随平均应力的增加而减小),提出了荷载方向;并且对基本模型的塑性模量进行了修改,从而大大降低了确定模型参数的难度。为了模拟土壤在循环荷载作用下的行为,还分别定义了荷载和荷载的塑性模量。然后,使用在不同应力路径(包括单调荷载和循环荷载)下的花岗岩堆石料的测试结果对所提出的模型进行评估。最后,该模型被用来分析水布ya混凝土面板堆石坝的变形。从大型板载试验对主堆石场和次要堆石场的模型参数进行了反分析。数值结果也与现场测量结果进行了比较。结果表明,所提出的模型可以对大坝在施工和整个蓄水期间的行为提供合理的预测。并且还可以预测由水位波动引起的永久变形。

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