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An inverse algorithm for the identification and the sensitivity analysis of the parameters governing micropolar elasto-plastic granular material

机译:用于控制微极性弹塑性粒状材料参数的辨识和灵敏度分析的逆算法

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The article concerns the complex determination process of the material parameters governing micropolar granular material with elasto-plastic material properties. Proceeding from a gradient-based method, we split the total set of parameters and the overall identification procedure into two major categories. These are, firstly, the identification of the parameters of a standard non-polar elasto-plastic continuum, and, secondly, the determination of the remaining parameters governing the micropolar part of the constitutive model. While the first set of parameters can be obtained from homogeneous triaxial tests on, e.g., granular, cohesive-frictional materials like sand, the second set can only be determined from inhomogeneous tests, such as biaxial tests including the onset and the development of shear bands. Following this, one can obtain the first part of the identification process from a simple inverse algorithm applied to the elasto-plastic material model of non-polar solids, while the second part requires a fully inverse computation in the sense of a back analysis of the underlying boundary-value problem. In the present article, this procedure is carried out by use of the semi-discrete sensitivity analysis. Finally, the whole model is applied to the data of Hostun sand taken at the universities of Grenoble and Stuttgart.
机译:该文章涉及控制具有弹塑性材料特性的微极性粒状材料的材料参数的复杂确定过程。从基于梯度的方法开始,我们将参数的总集合和总体识别过程分为两大类。这些首先是确定标准非极性弹塑性连续体的参数,其次是确定控制本构模型的微极性部分的其余参数。虽然第一组参数可以从均质三轴测试中获得,例如,对诸如沙子等颗粒状,内聚摩擦材料进行测试,但是第二组参数只能从非均质测试中确定,例如双轴测试(包括剪切带的开始和发展) 。然后,可以从应用于非极性固体的弹塑性材料模型的简单逆算法中获得识别过程的第一部分,而第二部分则需要对模型的反分析进行完全逆计算。潜在的边值问题。在本文中,此过程是通过使用半离散灵敏度分析来执行的。最后,将整个模型应用于格勒诺布尔和斯图加特大学的Hostun砂岩数据。

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