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Simulation of seismic liquefaction: 1-g model testing system and shaking table tests

机译:地震液化模拟:1-g模型测试系统和振动台测试

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In this paper, we focus on the development and performance of the 1-g model testing system to monitor the liquefaction occurrence of saturated soils, under subsequent one-dimensional shake table tests. The system is composed of one-dimensional laminar box, cone penetration system, soil model, system for hydraulic soil pumping to achieve loose soil deposit, instrumentation and associated testing hardware. In order to simulate the free-field conditions in the laboratory, the laminates slide on each other using rollers placed between each laminate. The static calibration test results demonstrate that the friction effects between the laminates and the rollers are satisfactorily low. The loosest and the most liquefiable sand deposit is prepared inside the laminar box by hydraulic filling process and subjected to four subsequent shaking tests at different intensities. First, the laminar box and shake table performance is verified by using time-histories of acceleration and displacement test results. Then, the measured data inside the soil and on the laminates are compared with the numerical model. The previously calibrated numerical model UBCSAND which shows the seismic loading conditions in the free field is used in the simulations. Those shake table test results and the numerical simulations of the box and the soil indicate that the usefulness of the laminar box system for shaking table tests is satisfactory for dynamic model tests in 1-g gravity.
机译:在本文中,我们着重于在随后的一维振动台试验下监测饱和土壤液化发生的1-g模型试验系统的开发和性能。该系统由一维层流箱,圆锥体渗透系统,土壤模型,液压土壤泵送以实现松散土壤沉积的系统,仪器和相关测试硬件组成。为了模拟实验室中的自由场条件,层压板使用放置在每个层压板之间的辊子彼此滑动。静态校准测试结果表明,层压板与辊之间的摩擦效果令人满意。最松散和最易液化的沙子沉积物是通过液压填充过程在层状箱内部制备的,并随后进行了四次不同强度的振动测试。首先,通过使用加速度和位移测试结果的时间历史记录来验证层流箱和振动台的性能。然后,将土壤内部和层压板上的测量数据与数值模型进行比较。在模拟中使用了先前校准的数值模型UBCSAND,该模型显示了自由场中的地震荷载条件。这些振动台测试结果以及盒子和土壤的数值模拟表明,层状盒子系统用于振动台测试的有效性对于1 g重力下的动态模型测试是令人满意的。

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