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Experimental study of boundary effects in dynamic centrifuge modelling

机译:动态离心机建模中边界效应的实验研究

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摘要

Dynamic centrifuge modelling has been established as a powerful tool for studying soil-structure interaction problems under earthquake loading. Increasingly complex models are being tested in centrifuges all around the world in an attempt to understand real structure behaviour under earthquake loading. However, there is a need to model the field conditions correctly in these centrifuge models. In a geotechnical centrifuge, the space available to model real situations is not infinite, and it is necessary to enclose the model within the finite boundaries of a container. The boundary effects of the soil container are important and can lead to inaccurate simulation of a field situation that has infinite lateral extent. The equivalent shear beam (ESB) model container used in dynamic centrifuge testing is built to achieve the same dynamic response as the soil sample to minimise the boundary effects. A series of dynamic centrifuge tests involving loose and dense, dry and saturated models of homogeneous horizontal sand layers has been carried out to investigate the effects of the end walls of the ESB model container on soil behaviour. In both saturated and dry sand models it was seen that amplification of acceleration occurs at the base of the model close to the end wall. In saturated models, as excess pore pressures build up, the response of the centre of the model gets progressively more different from that near to the end wall. This is to be expected as the box stiffness was matched to that of the non-liquefied soil column. It was confirmed that when the relative density of the soil in the model was around 50%, close to that of the design soil layer, the change in behaviour towards the end wall was minimal.
机译:动态离心机建模已被建立为研究地震荷载下土壤与结构相互作用问题的有力工具。越来越复杂的模型正在全世界的离心机中进行测试,以了解地震荷载下的真实结构行为。但是,需要在这些离心机模型中正确模拟现场条件。在岩土离心机中,可用于对实际情况进行建模的空间不是无限的,因此有必要将模型封装在容器的有限边界内。土壤容器的边界效应很重要,并且可能导致横向范围无限的野外情况的模拟不准确。建立用于动态离心测试的等效剪切梁(ESB)模型容器,以实现与土壤样品相同的动态响应,以最大程度地减少边界效应。已经进行了一系列涉及均匀水平砂层的松散,密集,干燥和饱和模型的动态离心试验,以研究ESB模型容器端壁对土壤行为的影响。在饱和砂岩模型和干砂模型中,都可以看到加速度的放大发生在靠近端壁的模型底部。在饱和模型中,随着多余的孔隙压力的增加,模型中心的响应与靠近端壁的响应逐渐变得越来越不同。这是可以预期的,因为箱体刚度与非液化土柱的刚度相匹配。可以确定的是,当模型中土壤的相对密度约为50%,接近设计土壤层的密度时,朝向端壁的行为变化很小。

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