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Centrifuge modeling of the seismic responses of sand deposits with an intra-silt layer

机译:粉砂层内砂沉积物地震反应的离心模型

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Three dynamic centrifuge model tests were conducted at an acceleration of 80g to simulate the seismic responses of level sand deposits: an intra-silt layer was embedded in two of these sand deposits at different depths. The effects of a low-permeability intra-silt layer on the build-up and dissipation of excess pore-water pressure, surface settlement, and the related liquefaction mechanism were investigated. An intra-silt layer modifies the seismic response of the sand deposit, reduces the extent of liquefaction, and thus decreases surface settlement. The depth of the intra-silt layer is one of the factors influencing the seismic responses of the sand deposits. The magnitude of the surface settlement is proportional to the degree of liquefaction in the sand deposit. The high positive hydraulic gradients appearing in both the intra-silt layer and in the sand deposit lying on the intra-silt layer can break a thinner or weaker top layer and result in sand boiling. Our visual animation of the ratio of the excess pore-water pressure and the lateral displacement revealed that the liquefaction front travels upward during shaking and the solidification front travels upward after shaking. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在80g的加速度下进行了三个动态离心模型测试,以模拟水平砂矿的地震响应:在其中两个不同深度的砂矿中嵌入了一个淤泥内层。研究了低渗透淤泥内层对过量孔隙水压力的形成和消散,表面沉降以及相关液化机理的影响。淤泥内层改变了砂沉积物的地震响应,减少了液化程度,因此减少了表面沉降。粉砂内层的深度是影响砂土地震反应的因素之一。表面沉降的大小与砂矿中的液化程度成正比。淤泥内层和淤泥内层上的沙沉积物中均出现高的正水力梯度,可能会使较薄或较弱的顶层破裂,并导致沙沸腾。我们对多余的孔隙水压力与横向位移之比的视觉动画显示,液化前沿在振动过程中向上移动,而凝固前沿在振动后向上运动。 (C)2014 Elsevier Ltd.保留所有权利。

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