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LEAP-GWU-2015: Centrifuge and numerical modelling of slope liquefaction at the University of Cambridge

机译:LEAP-GWU-2015:剑桥大学边坡液化的离心机和数值模型

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As part of the LEAP-GWU-2015 exercise, a dynamic centrifuge test was conducted at the University of Cambridge on a 5° slope of medium dense Ottawa F-65 sand. The model preparation and saturation details are presented in this paper. This paper presents the experimental data recorded during small and large magnitude sinusoidal ground motions. After the experiment, numerical simulations of the experiment were performed using the finite element code Swandyne. The results from these numerical analyses are compared with the centrifuge test data and the deformations observed during the post-test investigations. The numerical analyses replicated many of the salient features of the test, such as the overall generation of excess pore pressures and attenuation of accelerations in the liquefying ground. More subtle results, such as the de-liquefaction shocks and the asymmetric response due to differences in upslope and downslope accelerations were less well captured in terms of the expected spikes in the dynamic excess pore pressures and accelerations. Overall, the combination of centrifuge testing and numerical analysis were found to complement each other well.
机译:作为LEAP-GWU-2015演习的一部分,在剑桥大学对中等密度的渥太华F-65砂的5°坡度进行了动态离心测试。本文介绍了模型准备和饱和度细节。本文介绍了在小幅度和大幅度正弦波地面运动过程中记录的实验数据。实验之后,使用有限元代码Swandyne进行了实验的数值模拟。将这些数值分析的结果与离心测试数据以及在测试后研究期间观察到的变形进行比较。数值分析复制了该测试的许多显着特征,例如,整体上产生了过多的孔隙压力,并削弱了液化地面中的加速度。就动态过大孔隙压力和加速度的预期峰值而言,诸如上坡和下坡加速度差异引起的去液化冲击和不对称响应等更微妙的结果无法很好地捕获。总的来说,离心测试和数值分析相结合可以很好地互补。

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