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Centrifuge modeling of seismic behavior of a slope in liquefiable soil

机译:液化土中边坡地震行为的离心模型

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摘要

Two centrifuge tests were designed to improve the understanding the response of liquefied sandy slopes beyond initial liquefaction. A distinctive dilative behavior of the soil was observed near the slope where static shear stresses are present. The corresponding drops in the piezometric records and simultaneous negative upslope spikes in the acceleration records were measured in the transducer raw data. This dilative response became stronger as the input acceleration increased and tends to limit the downslope accumulation and thus reducing the permanent lateral displacements. Therefore, the maximum permanent displacement was smaller in the model with the larger input motion, because it developed a stronger dilative response. The dilative response was not observed away from the slope, where no static shear stresses are present.
机译:设计了两个离心机试验,以提高对液化砂质边坡的响应,使其超出初始液化的范围。在存在静态剪应力的斜坡附近观察到土壤的独特膨胀行为。在换能器原始数据中测量了测压记录中的相应下降以及加速度记录中同时出现的负上坡尖峰。随着输入加速度的增加,这种扩张反应变得更强,并倾向于限制下坡的积累,从而减少永久性的横向位移。因此,在具有较大输入运动的模型中,最大永久位移较小,因为它产生了较强的扩张响应。在没有静态剪应力的斜坡附近没有观察到膨胀响应。

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