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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Centrifuge testing to investigate effects of partial saturation on the response of shallow foundation in liquefiable ground under strong sequential ground motions
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Centrifuge testing to investigate effects of partial saturation on the response of shallow foundation in liquefiable ground under strong sequential ground motions

机译:离心试验,研究在强连续地面运动下部分饱和度对液化地面浅基础响应的影响

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摘要

Induced partial saturation is one of the novel techniques to increase the liquefaction resistance of saturated sandy ground. Nonetheless, a limited number of experimental studies are available on the delineation of this method. Moreover, the performance of induced partial saturation under sequential ground motions is poorly understood. Dynamic centrifuge experiments are carried out to investigate the effects of partial saturation on the response of shallow foundation resting on liquefiable ground under sequential ground motions. Centrifuge models consist of two distinct shallow foundations and associated superstructures resting on a liquefiable uniform sand layer. The drainage-recharge method is used to induce partial saturation in the model ground. Compressibility change of pore fluid and alteration of ground permeability because of induced air voids, affect the deformation mechanism of the ground-foundation system. Assessment of maximum potential volumetric compressibility of pore fluid because of induced air voids is essential to understand the effectiveness of induced partial saturation. Centrifuge test results signify that the induced partial saturation reduces the overall deformation of the foundation-structure system. However, slightly amplified kinematic seismic demand is observed at superstructures in case of partially saturated ground in comparison with fully saturated ground.
机译:诱导的局部饱和是增加饱和砂土抗液化性的新技术之一。然而,关于这种方法的描述,仅有有限的实验研究。此外,人们对在连续地面运动下引起的局部饱和的性能了解得很少。进行了动态离心实验,研究了在连续地面运动下部分饱和度对液化地面上浅层基础响应的影响。离心模型由两个不同的浅层基础和相关的上部结构组成,这些基础位于可液化的均匀砂层上。排水-补给法用于在模型地基中引起部分饱和。孔隙引起的孔隙流体可压缩性变化和渗透率的变化,影响了地基体系的变形机理。评估由于诱导的气孔造成的孔隙流体的最大潜在体积可压缩性对于理解诱导的部分饱和的有效性至关重要。离心机测试结果表明,引起的部分饱和降低了基础结构系统的整体变形。然而,与完全饱和的地面相比,在部分饱和地面的情况下,在上部结构上观察到了稍微放大的运动地震需求。

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