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Shaking table test study on seismic performance of inclined pile foundations in liquefiable soil

机译:旋转桩基地震性能的摇摆表试验研究

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摘要

Inclined pile foundations are widely used in civil engineering by virtue of sufficient horizontal stiffness, but few studies have touched upon the seismic performance of inclined piles in liquefiable soil. To better understand the performance of the inclined piles in liquefiable soil under earthquake conditions, a series of 1 g shaking table tests of inclined and vertical piles in liquefiable soil were performed. Superstructure-pile-soil dynamic interaction was considered while three types of earthquake waves with different characteristics were selected as the applied earthquake motions. The horizontal acceleration of the superstructure and the pile cap, the rotational acceleration of the pile cap, the total base shear force, and the bending moment of two types of physical models were monitored and analyzed. The results show that inclined piles in liquefiable soil can effectively reduce the horizontal vibration of the superstructure and the pile cap, and the acceleration reduction of the pile cap is about 2.5 times larger than that of the superstructure. Meanwhile, inclined piles can also reduce the total base shear force, and the extent of reduction depends on the input earthquake wave. Besides, the results suggest that the maximum bending moment of inclined piles is located at the pile head, and its value is positively correlated with the amplitude of the earthquake wave, and is affected by the type of the input earthquake wave. Overall, inclined pile foundations show satisfactory seismic performance for a superstructure-foundation-liquefiable soil system, and this study, with a rich amount of data, can serve as an important reference for the seismic design of inclined piles in liquefiable soil.
机译:倾斜的桩基础广泛用于土木工程中的充分水平僵硬,但很少有研究涉及液化土壤中倾斜桩的地震性能。为了更好地了解地震条件下液化土中倾斜桩的性能,进行了一系列1g液化土中倾斜和垂直桩的1g振动台试验。考虑超结构 - 桩 - 土壤动态相互作用,同时选择具有不同特性的三种类型的地震波作为应用的地震运动。监测和分析了上层建筑和桩帽的水平加速度,桩帽,桩帽的旋转加速度,总基剪力和两种物理模型的弯矩。结果表明,液化土中的倾斜桩可以有效地降低上层建筑和桩帽的水平振动,并且桩帽的加速度降低大约比上部结构大约2.5倍。同时,倾斜桩也可以减小总基剪力力,并且还原程度取决于输入地震波。此外,结果表明倾斜桩的最大弯矩位于桩头处,其值与地震波的幅度呈正相关,并且受到输入地震波的类型的影响。总体而言,倾斜桩基础呈现出令人满意的劣质地基 - 液化土壤系统的抗震性能,本研究具有丰富的数据,可以作为液化土壤中倾斜桩的地震设计的重要参考。

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