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Micro- and macro-observations of liquefaction of saturated sand around buried structures in centrifuge shaking table tests

机译:离心振动台试验中埋藏结构周围饱和砂土液化的微观和宏观观察

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A novel experimental method was designed to study the micro-behavior of saturated sand around a buried structure in centrifuge shaking table tests under strong simulated earthquake loading, in addition to the traditional macro-measurements. One free field test was first carried out as a reference, followed by one test with a deep buried structure and one with a shallowly buried structure. During the tests with the buried structure, high quality pictures of moving sand around the structure were recorded by a newly developed image acquisition system. By analyzing the interesting pictures at reasonable intervals using an image analysis software, the evolutions of microstructural features were obtained such as the orientations of the long axes of particles, the orientations of contact normals between particles and the average contact number of the interesting group of particles. The results showed that the evolutions of the micro-features were consistent with those of the macro-measurements such as excess pore pressures and accelerations, which help, illuminate the mechanism of sand liquefaction. (C) 2015 Elsevier Ltd. All rights reserved.
机译:除了传统的宏观测量方法外,还设计了一种新颖的实验方法来研究在强烈振动模拟下的离心振动台试验中,地下结构周围饱和砂土的微观行为。首先进行一个自由场测试作为参考,然后进行一个具有深埋结构的测试,并进行一个具有浅埋结构的测试。在对地下结构进行测试的过程中,通过新开发的图像采集系统记录了围绕结构移动的沙子的高质量图片。通过使用图像分析软件以合理的间隔分析有趣的图片,获得了微观结构特征的演变,例如粒子长轴的方向,粒子之间的接触法线的方向以及有趣的粒子组的平均接触数。结果表明,微观特征的演化与宏观测量的演化相吻合,例如超孔隙压力和加速度,这有助于阐明砂土液化的机理。 (C)2015 Elsevier Ltd.保留所有权利。

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