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Development of dynamic centrifuge models of underground structures near tall buildings

机译:高层建筑地下结构动力离心模型的建立

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A series of six centrifuge experiments was designed and conducted to assess the seismic influence of a mid to highrise building on adjacent shallow underground structures. The buildings modeled in this study (12 and 42 stories) were the tallest structures tested in centrifuge to date. In designing these experiments, it was important to represent the modal frequencies, base shear, base moment, and yield characteristics of realistic mid and highrise structures, in order to transmit realistic seismic demands onto the underground structures. For the midrise structure, it was possible to simulate the height, mass, and three primary modes of response with a simplified, scaled model in centrifuge. For the highrise structure, additional simplifications were necessary due to a limited overhead space. A scaled, single degree-of-freedom structure could capture the fundamental frequency, mass, and therefore base shear of a representative 42-story highrise building, while other properties were sacrificed. The six experiments with varied payloads required similar base motions to experimentally evaluate the seismic impact of buildings on underground structures. The heavy structures applied an unprecedented demand on the shaking table under increased gravity, which was expected to adversely affect the repeatability of motions. Even though the achieved base motions were significantly de-amplified compared to those desired, their coefficient of variation among six experiments was less than 0.2 in the frequency range of interest (0.2-5 Hz), indicating acceptable repeatability. The buildings were instrumented during the centrifuge tests to measure their base shear and roof drifts. The results were consistent with pushover analyses and design requirements, indicating realistic overall stiffness, yielding characteristics, and shear forces transmitted to the foundation. The overall response of the system indicates that, with reasonable approximations, the seismic forces transferred from tall buildings to the foundation soil and an adjacent underground structure can be successfully modeled and evaluated in centrifuge. (C) 2016 Elsevier Ltd. All rights reserved.
机译:设计并进行了一系列的六个离心机实验,以评估中高层建筑对相邻浅层地下结构的地震影响。在这项研究中建模的建筑物(12层和42层)是迄今为止在离心机上测试的最高建筑物。在设计这些实验时,代表真实的中高层建筑的模态频率,基础剪力,基础弯矩和屈服特性非常重要,以便将现实的地震需求传递到地下结构上。对于中层结构,可以使用简化的比例模型在离心机中模拟高度,质量和三种主要的响应模式。对于高层结构,由于开销空间有限,因此必须进行其他简化。规模化的单自由度结构可以捕获具有代表性的42层高层建筑的基本频率,质量以及基础剪力,同时牺牲其他性能。六个具有不同有效载荷的实验需要类似的基本运动,以通过实验评估建筑物对地下结构的地震影响。重型结构在增加重力的情况下对振动台施加了前所未有的需求,这预计会对运动的可重复性产生不利影响。尽管与所需的基本运动相比,已实现的基本运动大大降低了放大倍数,但在所关注的频率范围(0.2-5 Hz)中,六个实验之间的基本运动变化系数均小于0.2,表明可接受的重复性。在离心测试中对建筑物进行了仪器测量,以测量其基础剪切力和屋顶位移。结果与推覆分析和设计要求一致,表明实际的整体刚度,屈服特性和传递给基础的剪力。该系统的整体响应表明,以合理的近似值,可以成功地对离心机中从高层建筑传递到地基土壤和相邻地下结构的地震力进行建模和评估。 (C)2016 Elsevier Ltd.保留所有权利。

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