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首页> 外文期刊>International journal of geomechanics >Physical Modeling of Seismic Soil-Pile-Structure Interaction for Buildings on Soft Soils
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Physical Modeling of Seismic Soil-Pile-Structure Interaction for Buildings on Soft Soils

机译:软土上建筑物的地震土-桩-结构相互作用的物理模拟

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The present research intends to study the effects of the seismic soil-pile-structure interaction (SSPSI) on the dynamic response of buildings with various heights by conducting a series of shaking table tests on 5-, 10-story, and 15-story model structures. Two types of foundations for each case are investigated, including (1) a fixed-base structure, representing the situation excluding the soil-structure interaction; and (2) a structure supported by an end-bearing pile foundation in soft soil. An advanced laminar soil container has been designed that uses three-dimensional numerical modeling to minimize the boundary effects and to simulate free-field motion during the shaking table tests. Four real earthquake events, including Kobe 1995, Northridge 1994, El Centro 1940, and Hachinohe 1968, are imposed to each model. According to the experimental measurements, it is observed that the SSPSI amplifies the maximum lateral deflections and in turn interstory drifts of the structures supported by end-bearing pile foundations in comparison with the fixed-base structures. The rocking component plays an important role in increasing the lateral deflection of the superstructures, which can shift the performance level of the structures to near collapse or even collapse levels and as a result should be assessed precisely in the seismic design of buildings resting on soft soils. (c) 2014 American Society of Civil Engineers.
机译:本研究旨在通过对5层,10层和15层模型进行一系列振动台试验,研究地震土-桩-结构相互作用(SSPSI)对不同高度建筑物的动力响应的影响。结构。针对每种情况研究了两种类型的地基,包括(1)固定基础结构,表示不包括土-结构相互作用的情况; (2)在软土中由端承桩基础支撑的结构。设计了一种先进的层状土壤容器,该容器使用三维数值模型来最小化边界影响并在振动台测试过程中模拟自由场运动。每个模型都施加了四个真实的地震事件,包括Kobe 1995,Northridge 1994,El Centro 1940和Hachinohe 1968。根据实验测量结果,与固定基础结构相比,SSPSI放大了端承桩基础所支撑结构的最大横向挠度,进而放大了层间位移。摇摆分量在增加上层建筑的侧向挠度中起着重要作用,这可以使结构的性能水平接近崩溃甚至崩溃的水平,因此应在软土地基的建筑物的抗震设计中进行准确评估。 (c)2014年美国土木工程师学会。

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