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Modeling of embankment beneath marine deposited soft sensitive clays considering straightforward creep degradation

机译:考虑直接蠕变退化的海洋沉积软敏感黏土下路堤建模

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摘要

One method straightforwardly describing the creep degradation behavior of soft marine clay is proposed and applied to the embankment modeling. Based on the experimental phenomena, the evolution of creep coefficient of soft structured clay is identified comparing with reconstituted clay, and formulated using the creep coefficient of reconstituted clay and a creep-based structure parameter relating to the inter-particle bonding. The contributions of inter-particle bonding and debonding to creep coefficient are thus considered and the creep degradation behavior is then captured straightforwardly. The creep coefficient is extended to 3D and incorporated into a newly developed elasto-viscoplastic model to describe the creep degradation in a direct way. Based on the correlations, the liquid limit is adopted as the viscosity related input parameter. The model is derived using Newton-Raphson algorithm and implemented into a Finite Element code for coupled consolidation analysis. The general applicability on creep degradation of the model is validated by simulating 1D creep, 1D CRS (constant strain rate) and 3D undrained creep tests. Finally, the enhanced model considering creep degradation is applied and validated by simulating one test embankment and one test fill on marine deposited soft sensitive clays.
机译:提出了一种直接描述软质海相黏土蠕变退化行为的方法,并将其应用于路堤建模。基于试验现象,确定了软结构黏土与复溶黏土的蠕变系数的演变,并利用复构黏土的蠕变系数和与颗粒间键合相关的蠕变结构参数进行了配制。因此,考虑了颗粒间键合和脱键对蠕变系数的贡献,然后直接捕获了蠕变退化行为。蠕变系数扩展到 3D 并合并到新开发的弹粘塑性模型中,以直接描述蠕变退化。基于相关性,采用液体极限作为与粘度相关的输入参数。该模型使用Newton-Raphson算法推导,并实现到有限元代码中,用于耦合合并分析。通过模拟一维蠕变、一维CRS(恒定应变率)和三维不排水蠕变试验,验证了模型在蠕变退化方面的普遍适用性。最后,通过对海洋沉积软敏黏土的1个试验堤和1个试验填土进行模拟,应用并验证了考虑蠕变退化的增强模型。

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