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Investigation of Rocking Mechanism of Shallow Foundation via Centrifuge Tests

机译:浅层基础摇摆试验的离心试验研究

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Rocking behavior of shallow foundations for bridge piers has emerged as an effective method to reduce the seismic load on the superstructure. The design philosophy that uses the rocking behavior of shallow foundation during an earthquake is called "rocking foundation". Previous studies on rocking foundation have focused on the verification of rocking effect to reduce the seismic load. Nevertheless, the rocking foundation is not used in practice due to the lack of understanding on the mechanism of rocking behavior. In this study, slow cyclic tests were performed using a geotechnical centrifuge with different slenderness ratios of structures to investigate the rocking mechanism of shallow foundation. From the variations of the pressure below the shallow foundation, "soil rounding" phenomenon was observed. In addition, the soil rounding effect, the key mechanism of rocking foundation, was described in two parts. Before yielding, a relation between overturning moment in the shallow foundation and the cyclic load direction was observed. The overturning moment converged to the ultimate moment capacity of shallow foundation after yielding. Therefore, the rocking mechanism of the shallow foundation was investigated using the soil rounding phenomena.
机译:桥墩浅层基础的摇摆行为已经成为减轻上层建筑地震荷载的有效方法。在地震中使用浅层基础摇摆特性的设计原理称为“摇摆基础”。先前关于摇摆基础的研究集中在验证摇摆效应以减小地震载荷上。然而,由于对摇摆行为的机理缺乏了解,摇摆基础没有在实践中使用。在这项研究中,使用具有不同结构细长比的岩土离心机进行了慢循环试验,以研究浅层基础的摇摆机理。从浅层地基下方的压力变化中,观察到“土壤变圆”现象。此外,还分两部分描述了土的圆化作用,这是摇摆基础的关键机制。在屈服之前,观察到浅层基础中的倾覆力矩与循环荷载方向之间的关系。屈服后,倾覆力矩收敛到浅层基础的极限力矩承载力。因此,利用土壤倒圆现象研究了浅层地基的摇摆机理。

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