超高层巨型框架-双芯管复合结构抗震性能试验研究

IF 6.7 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Journal of building engineering Pub Date : 2024-09-07 DOI:10.1016/j.jobe.2024.110680
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引用次数: 0

摘要

近年来,人口密度的增加和城市化进程的加快,使人们对高层建筑的需求日益强烈。在地震多发地区,高层建筑的抗震性能应受到重视,尤其是最容易受到长周期地震影响的超高层建筑。本文介绍了 499 米超高层巨型框架-双芯管复合结构的模型设计,并展示了 1/50 比例结构模型的振动台试验结果。该超高层建筑具有钢筋混凝土构件、高强度混凝土和双芯管等诸多有利于抗震的优点。在试验中,考虑了三组长周期地震和四个递增地震烈度等级。试验结果表明,外筒耦合梁是抗震的第一道防线。内筒的存在提高了该建筑的抗剪性,墙体上没有观察到剪切破坏。根据仪器数据,报告了结构的振动特性、加速度、位移和应变响应。该超高层建筑的抗震性能符合设计规范的要求,其在强震下的抗倒塌能力也得到了物理证明。然而,由于质量的减少和巨型柱端约束,加速度对屋顶的鞭打效应非常严重。此外,顶部区域桁架的层间漂移和应变响应也明显增大。在进行地震测量时,应高度重视该超高层建筑顶部区域的外部耦合梁和结构构件。本研究为采用超大型框架-双芯管复合系统的超高层建筑提供了很好的实验证实和参考。
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Experimental investigation on seismic performance of a super high-rise mega frame-double core tube composite structure

Increasing population density and urbanization have intensified the need for high-rise buildings in recent years. The seismic resistance of high-rise buildings should be carefully concerned in seismic regions, especially for super high-rise buildings which are most vulnerable to long-period earthquakes. This paper introduced the model design of a 499 m super high-rise mega frame-double core tube composite structure and presented the shaking table test results of the 1/50 scaled structural model. This super high-rise building possesses many conducive merits to resist seismic hazard, including steel reinforced concrete members, high-strength concrete and double core tube. In the test, there were three groups of long-period earthquakes and four incremental seismic intensity levels considered. The test phenomena indicated that the coupling beams of exterior tube were the first line of defense to resist seismic actions. The existence of inner tube improved the shear resistance of this building and there was no observed shear damage on the walls. Based on the instrumented data, the vibration characteristics, acceleration, displacement and strain responses of the structure were reported. The seismic performance of this super high-rise building meets the requirements of design specifications and its collapse resistance capacity is physically proved under severe earthquakes. However, the whiplash effect of acceleration is serious on the roof due to the reduction of mass and constraint for the mega column end. Furthermore, the inter-story drifts and strain responses of trusses in the top region are significantly larger. For the seismic measurement, great attentions should be paid to the exterior coupling beams and structural members in the top region of this super high-rise building. The presented work provides well experimental confirmation and reference for super high-rise buildings with mega frame-double core tube composite system.

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来源期刊
Journal of building engineering
Journal of building engineering Engineering-Civil and Structural Engineering
CiteScore
10.00
自引率
12.50%
发文量
1901
审稿时长
35 days
期刊介绍: The Journal of Building Engineering is an interdisciplinary journal that covers all aspects of science and technology concerned with the whole life cycle of the built environment; from the design phase through to construction, operation, performance, maintenance and its deterioration.
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