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Experimental evidences of the effectiveness of some liquefaction mitigation measures

机译:一些液化缓解措施的有效性的实验证据

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Earthquakes induced liquefaction is one of the most significant causes of damage to structures during an earthquake. Ground improvement is currently considered to be the most appropriate mitigation tecnique to prevent soil liquefaction. This work is aimed to compare different liquefaction mitigation techniques for protection of small-to-medium sized 'critical' infrastructures and low-rise buildings. The effectiveness of some techniques (densification, addition of fine contents, induced partial saturation and drainage systems) was verified via experimental evidences coming from laboratory testing, physical modelling and liquefaction field prototype tests. Starting from the calibration of advanced soil constitutive models, numerical modelling activities were extended to the back-analysis of centrifuge tests and field prototype tests, up to a parametric study with different geometrical layouts.
机译:地震诱导的液化是地震期间结构损坏的最重要原因之一。 目前认为地面改善是最合适的减缓Tecnique,以防止土壤液化。 这项工作旨在比较不同的液化缓解技术,以保护小于中型大小的“关键”基础设施和低层建筑物。 通过来自实验室测试,物理建模和液化场原型测试的实验证据,通过实验证据验证了一些技术的有效性(致密化,添加细含量,诱导的部分饱和和排水系统)。 从先进的土壤本构模型的校准开始,数值建模活动延伸到离心机测试和现场原型测试的背面分析,直到具有不同几何布局的参数研究。

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