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首页> 外文期刊>International Journal for Numerical and Analytical Methods in Geomechanics >Numerical simulations of simple shear with non-coaxial soil models
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Numerical simulations of simple shear with non-coaxial soil models

机译:非同轴土模型简单剪切的数值模拟

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This paper investigates the effects of a non-coaxial model on simulated stress-strain behaviour of granular materials subject to simple shearing under various initial conditions. In most cases, a significant difference of predictions between coaxial and non-coaxial modelling is found during the early stage in shearing. With the increase in shearing, non-coaxial simulations approach and tend to coincide with coaxial simulations. It is also found that the roles of non-coaxial modelling in simulating simple shear behaviour are considerably influenced by hardening rules, flow rules, initial static lateral pressure coefficients. In some cases, the non-coaxial modelling gives a similar simulation as the coaxial modelling. In other cases, the non-coaxial modelling decreases the hardening response or softening response of materials, compared with the coaxial modelling Under certain conditions, the predicted peak strength of materials with non-coaxial modelling is larger than that for coaxial modelling. Some of these observations can be attributed to the amount of principal stress rotation in various cases analysed. Others can be attributed to the difference between the directions of the non-coaxial plastic flow and those for coaxial plastic flow.
机译:本文研究了非同轴模型对颗粒材料在各种初始条件下进行简单剪切的模拟应力-应变行为的影响。在大多数情况下,在剪切的早期阶段,发现同轴模型和非同轴模型之间的预测存在显着差异。随着剪切力的增加,非同轴模拟接近并且趋于与同轴模拟一致。还发现,非同轴建模在模拟简单剪切行为中的作用受硬化规则,流动规则,初始静侧压力系数的影响很大。在某些情况下,非同轴建模可提供与同轴建模相似的仿真。在其他情况下,与同轴建模相比,非同轴建模会降低材料的硬化响应或软化响应。在某些条件下,使用非同轴建模的材料预测的峰值强度要大于同轴建模的预测峰值强度。这些观察中的一些可以归因于在各种情况下分析的主应力旋转量。其他原因可归因于非同轴塑性流动方向与同轴塑性流动方向之间的差异。

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