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Identification and validation of a discrete element model for concrete

机译:混凝土离散元模型的辨识与验证

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The use of a three-dimensional discrete element method (DEM) is proposed to study concrete structures submitted to dynamic loading. The aim of this paper is to validate the model first in the quasistatic domain, and second in dynamic compression, at the sample scale. A particular growing technique is used to set a densely packed assembly of arbitrarily sized spherical particles interacting together, representing concrete. An important difference from classical DEMs where only contact interactions are considered, is the use of an interaction range. First, the correct identification of parameters of the DEM model to simulate elastic and nonlinear deformation including damage and rupture is made through quasistatic uniaxial compression and tension tests. The influence of the packing is shown. The model produces a quantitative match of strength and deformation characteristics of concrete in terms of Young's modulus, Poisson's coefficient, and compressive and tensile strengths. Then, its validity is extended through dynamic tests. The. simulations exhibit complex macroscopic behaviors of concrete, such as strain softening, fractures that arise from extensive microcracking throughout the assembly, and strain rate dependency.
机译:提出了使用三维离散元方法(DEM)研究动态荷载作用下的混凝土结构的方法。本文的目的是首先在样本规模上在准静态域中验证模型,然后在动态压缩中进行模型验证。使用一种特定的生长技术来设置密集堆积的任意大小的球形颗粒相互作用的组装组件,这些颗粒代表混凝土。与仅考虑接触相互作用的经典DEM的一个重要区别是相互作用范围的使用。首先,通过准静态单轴压缩和拉伸测试,正确识别了DEM模型的参数,以模拟包括破坏和破裂在内的弹性和非线性变形。显示了填料的影响。该模型根据杨氏模量,泊松系数以及抗压强度和抗张强度对混凝土的强度和变形特性进行定量匹配。然后,通过动态测试扩展其有效性。的。模拟显示了混凝土的复杂宏观行为,例如应变软化,整个装配过程中广泛的微裂纹引起的断裂以及应变率依赖性。

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