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Centrifuge and numerical modelling of earthquake-induced soil liquefaction under free-field conditions and by considering soil-structure interaction

机译:地震诱导土壤液化在自由场条件下的离心机和数值模型,考虑土 - 结构相互作用

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Modelling earthquake-induced soil liquefaction and assessing its consequences to overlying buildings are still delicate and challenging tasks in geotechnical earthquake engineering. Having been carried out within the European H2020 LIQUEFACT project, this paper focuses on the application of both physical and numerical modelling techniques. We present the complete passage starting from the preparation of the physical models to ending with the comparison of recorded (experimental) and simulated (numerical) results. We discuss in detailed manner the dynamic response of two systems with and without the presence of a structure lying at the top of a uniform, medium-dense, saturated Ticino sand, whose main properties (physical, mechanical, hydraulic, and state) are well known. Through a set of numerical analyses carried out under homogeneous conditions, we provide in this paper insights to throw light into the effect of structure on the system response. Salient conclusion of this work suggests that the presence of structure changes the kinematic response of the system through beneficial effect in terms of increased vertical effective stress and detrimental effect in terms of concentrated strain field present nearby the foundations. Unfortunate combination of those beneficial and detrimental effects results in stronger response in terms of acceleration and larger settlements with the presence of structure with respect to the free-field counterpart.
机译:在岩土地震工程中,模拟地震引起的土壤液化并评估其对上覆建筑物的影响仍然是一项微妙且具有挑战性的任务。在欧洲H2020液化项目中,本文重点介绍物理和数值模拟技术的应用。我们展示了完整的文章,从物理模型的准备到记录(实验)和模拟(数值)结果的比较。我们详细讨论了两个系统在均匀、中密、饱和提契诺砂顶部存在和不存在结构时的动态响应,其主要特性(物理、机械、水力和状态)众所周知。通过在均匀条件下进行的一系列数值分析,我们在本文中提供了一些见解,以阐明结构对系统响应的影响。这项工作的显著结论表明,结构的存在通过增加垂直有效应力的有利影响和基础附近集中应变场的不利影响,改变了系统的运动响应。不幸的是,这些有利和不利影响的结合导致加速度响应更强,结构物相对于自由场对应物的沉降更大。

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