A viscoplastic constitutive model for plastic silts and clays for static slope stability applications

Tyler J. Oathes, Ross W. Boulanger, K. Ziotopoulou
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Abstract

A viscoplastic model for representing plastic silts and clays in geotechnical static slope stability applications is presented. The PM4SiltR model builds on the stress ratio-controlled, critical state-based, bounding surface plasticity model PM4Silt and is coded as a dynamic link library for use in the finite difference program FLAC 8.1. PM4SiltR incorporates strain rate-dependent shear strength, stress relaxation, and creep using a consistency approach combined with an internal strain rate and auto-decay process. The model does not include a cap, and as such cannot simulate strain rate-dependent consolidation under increasing overburden stress. Six parameters control the viscous response for PM4SiltR while the parameters controlling the nonviscous components of the response are the same as for PM4Silt. Single element simulations are presented to illustrate the influence of viscoplasticity on the constitutive response in direct simple shear loading and undrained creep. Single element responses are shown to be consistent with observed experimental results. Simulations of a hypothetical tailings dam constructed using the upstream method are performed to illustrate use of PM4SiltR at field scale. Results of field scale simulations show PM4SiltR can model undrained creep and progressive failure leading to delayed slope instability after relatively minor changes in loading conditions at field scale.
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应用于静态边坡稳定性的塑性淤泥和粘土粘塑结构模型
本文介绍了在岩土工程静态边坡稳定性应用中表示塑性淤泥和粘土的粘塑性模型。PM4SiltR 模型建立在应力比控制、基于临界状态的边界面塑性模型 PM4Silt 的基础上,并被编码为动态链接库,可用于有限差分程序 FLAC 8.1。PM4SiltR 采用一致性方法,结合内部应变率和自动衰减过程,纳入了与应变率相关的剪切强度、应力松弛和蠕变。该模型不包括盖层,因此无法模拟在覆盖层应力增加的情况下随应变速率变化的固结情况。六个参数控制 PM4SiltR 的粘性响应,而控制非粘性响应的参数与 PM4Silt 相同。单元素模拟说明了在直接简单剪切加载和无排水蠕变情况下粘塑性对构成响应的影响。结果表明,单元素响应与观察到的实验结果一致。对采用上游法建造的假定尾矿坝进行了模拟,以说明 PM4SiltR 在现场规模下的应用。现场规模的模拟结果表明,PM4SiltR 可以模拟在现场规模的加载条件发生相对较小的变化后,导致延迟边坡失稳的排水蠕变和渐进式破坏。
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