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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >The role of constitutive models in MPM simulations of granular column collapses
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The role of constitutive models in MPM simulations of granular column collapses

机译:本构模型在颗粒柱坍塌的MPM模拟中的作用

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The granular column collapse is a well-established experiment which consists of having a vertical column of granular material on a flat surface and letting it collapse by gravity. Despite its simplicity in execution, the numerical modelling of a column collapse remains challenging. So far, much attention has been dedicated in assessing the ability of various numerical methods in modelling the large deformation and little to the role of the constitutive model on both the triggering mechanism and the flow behaviour. Furthermore, the influence of the initial density, and its associated dilatancy and strength characteristics, have never been included in the analyses. Most past numerical investigations had relied on simple constitutive relations which do not consider the softening behaviours. The aim of this study is to illustrate the influence of the constitutive model on the on-set of failure, the flow behaviour and the deposition profile using the material point method. Three constitutive models were used to simulate the collapse of two granular columns with different geometries and for two densities. The results of the simulations showed that the constitutive model had a twofold influence on the collapse behaviour. It defined the volume of the mobilised mass which spread along the flat surface and controlled the dissipation of its energy. The initial density was found to enhance the failure angle and flow behaviours and was more significant for small columns than for larger ones. The analysis of the potential energy of the mobilised mass explained the existence of two collapse regimes.
机译:粒状柱塌陷是一项完善的实验,包括在平面上放置一粒垂直的粒状物质,并使其在重力作用下塌陷。尽管执行起来很简单,但柱塌陷的数值建模仍然具有挑战性。到目前为止,在评估各种数值方法对大变形进行建模的能力方面投入了很多注意力,而本构模型在触发机理和流动特性方面的作用却很少。此外,分析中从未包括初始密度的影响及其相关的剪胀性和强度特性。过去的大多数数值研究都依赖于简单的本构关系,而本构关系不考虑软化行为。这项研究的目的是使用材料点法来说明本构模型对破坏开始,流动行为和沉积轮廓的影响。使用三个本构模型来模拟两个具有不同几何形状和两个密度的粒状柱的坍塌。仿真结果表明,本构模型对倒塌行为具有双重影响。它定义了沿平面传播的动员质量的体积,并控制了其能量的耗散。发现初始密度可以提高失效角度和流动性能,并且对于较小的色谱柱,其密度要大于较大的色谱柱。对动员群众的势能的分析解释了两个崩溃制度的存在。

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