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The performance of a hypoplastic constitutive model in predictions of centrifuge experiments under earthquake conditions

机译:塑性本构模型在地震条件下离心实验预测中的性能

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The behaviour of water saturated, cohesionless soils under dynamic conditions is complex and difficult to capture numerically. In the presented work, a hypoplastic model has been applied for simulations of a saturated sandy soil under various seismic conditions and the results of the model have been compared with outputs of laboratory tests. For this purpose, three different centrifuge experiments with the same sand material, but with different boundary conditions and initial soil conditions, were recalculated using the finite element method coupling the deformation and flow behaviour. The simulations of all centrifuge experiments were performed with the same constitutive parameters. These were determined from laboratory results independent of the model tests. A very good agreement between the calculated results and the experiments shows that the hypoplastic constitutive model can realistically reproduce the soil behaviour under dynamic conditions. The prerequisite for a good prediction is a careful calibration of the model parameters, in particular taking into account the stress and strain dependence of the soil stiffness.
机译:在动态条件下,水饱和的,无粘性的土壤的行为是复杂的,并且很难用数字来表示。在提出的工作中,将一个非塑性模型用于模拟各种地震条件下的饱和砂土,并将该模型的结果与实验室测试的结果进行了比较。为此,使用耦合变形和流动特性的有限元方法,重新计算了三个使用相同砂子材料但边界条件和初始土壤条件不同的离心机实验。使用相同的本构参数进行所有离心机实验的模拟。这些是根据独立于模型测试的实验室结果确定的。计算结果与实验结果非常吻合,表明该塑性本构模型可以真实地再现动态条件下的土壤行为。良好预测的前提是模型参数的仔细校准,尤其要考虑土壤刚度的应力和应变依赖性。

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