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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Kyoto University LEAP-GWU-2015 tests and the importance of curving the ground surface in centrifuge modelling
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Kyoto University LEAP-GWU-2015 tests and the importance of curving the ground surface in centrifuge modelling

机译:京都大学Leap-Gwu-2015测试和弯曲地面在离心机建模中的重要性

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摘要

This paper presents a description of testing procedure and results of the LEAP-GWU-2015, and an investigation of the effect of the radial gravity field in centrifuge modelling. Dynamic responses of two models are compared. One had a planar surface with a 5 degrees slope relative to the base of the container; the other had a curved surface to maintain a constant slope angle with respect to the radial g-field. For the centrifuge tests employed in this study, the slope and base excitation are in the tangential direction to spinning centrifuge. Results show that spikes in acceleration records due to cyclic mobility associated with lateral displacements appeared on both models. However, for the plane surface model, acceleration spikes in the negative (upslope) direction are more prominent and the residual downslope ground deformation was larger. Larger lateral displacement was observed in the plane model, while surface displacements in the curved model are smaller and uniform along the length of the model. For the plane model, the radial gravity acting near the slope top is almost constant and gradually increases towards the slope toe which causes a net increase in effective slope angle. Curving the model ground surface is recognized as leading to uniform lateral displacements along the length of the model surface.
机译:本文介绍了莱普 - 2015年的测试程序和结果的描述,以及对离心机建模中的径向重力场的影响的研究。比较了两种模型的动态响应。一个平面表面,相对于容器的底部具有5度斜率;另一个具有弯曲表面,以相对于径向G字段保持恒定的倾斜角度。对于本研究中采用的离心机测试,斜坡和基础激发是纺丝离心机的切向方向。结果表明,由于与横向位移相关的循环移动性,加速记录中的尖峰出现在两种模型上。然而,对于平面表面模型,负(Upslope)方向的加速尖峰更加突出,并且残留的下坡地变形更大。在平面模型中观察到较大的横向位移,而沿着模型的长度,弯曲模型中的表面位移较小和均匀。对于平面模型,作用在斜面顶部附近的径向重力几乎是恒定的并且朝向斜坡脚趾逐渐增加,这导致有效倾斜角度的净增加。弯曲模型接地表面被认识为沿着模型表面的长度均匀的横向位移。

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