用地震记录的时间尺度方法评价隧道型混凝土建筑物对地震动特征变化的地震敏感性:一个案例研究

IF 4.1 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
Vahid Mohsenian, Luigi Di-Sarno
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引用次数: 0

摘要

分析研究表明,隧道形体系具有较高的强度和刚度。然而,在该系统的地震评价中,传统上仅将峰值地加速度和谱加速度作为表征地震地震动的主要烈度指标。虽然这种方法符合当前的地震指南,但它忽略了其他关键的地面运动特征的重要性。本文引入了地震记录的时间尺度法,并首次将其用于修正输入地震动的主要特征,用于隧道式建筑物的地震评价。对于2层、5层和10层的模型,研究结果表明,显著持续时间、峰值地面加速度和峰值地面速度对系统的地震响应有直接影响。结果表明,在给定的危险等级下,准确预测抗震性能和要求需要同时考虑这三个参数。分析表明,在高危险水平下,在保持加速度和显著持续时间不变的情况下,增加速度可以使系统的性能水平从立即占用变为防止崩溃。这突出了速度在抗震性能中的关键作用。同样,加速度和显著持续时间的变化也产生了类似的结果。在其他参数不变的条件下,在最坏的情况下,加速和持续时间的增加分别导致了生命安全和立即占用的性能水平。因此,在估计抗震性能水平时,这些参数的重要性排名第二和第三。此外,研究结果表明,基于代码的关系不能准确地预测隧道形式体系的地震需求。因此,修订和修改是必要的,以纳入地面运动特性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seismic sensitivity assessment of concrete tunnel-form buildings to variations in ground motion characteristics using time scaling of earthquake record approach: a case study

Analytical studies have demonstrated that tunnel-form system possesses relatively high strength and rigidity. However, in seismic evaluations of this system, only peak ground acceleration and spectral acceleration have traditionally been considered as the primary intensity measures representing earthquake ground motions. While this approach aligns with current seismic guidelines, it overlooks the importance of other critical ground motion characteristics. The present study introduces the time scaling of earthquake record method and, for the first time, employs it to modify the primary characteristics of input ground motions for the seismic evaluation of tunnel-form buildings. For the analyzed models of 2-, 5-, and 10-story, the findings reveal that significant duration, peak ground acceleration, and peak ground velocity have direct effects on the seismic responses of the system. Results indicate that, at a given hazard level, accurate predictions of seismic performance and demands require simultaneous consideration of all three parameters. Analyses show that at high hazard levels, an increase in velocity while keeping acceleration and significant duration constant can change the performance level of the system from immediate occupancy to collapse prevention. This highlights the critical role of velocity in seismic performance. Similarly, variations in acceleration and significant duration yielded comparable results. Under constant conditions for the other parameters, increases in acceleration and significant duration led to performance levels of life safety and immediate occupancy in the worst cases, respectively. Accordingly, these parameters rank second and third in importance when estimating seismic performance levels. Furthermore, the findings demonstrate that code-based relationships fail to predict the seismic demands of tunnel-form systems accurately. Consequently, revisions and modifications are necessary to incorporate the effects of ground motion characteristics.

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来源期刊
Bulletin of Earthquake Engineering
Bulletin of Earthquake Engineering 工程技术-地球科学综合
CiteScore
8.90
自引率
19.60%
发文量
263
审稿时长
7.5 months
期刊介绍: Bulletin of Earthquake Engineering presents original, peer-reviewed papers on research related to the broad spectrum of earthquake engineering. The journal offers a forum for presentation and discussion of such matters as European damaging earthquakes, new developments in earthquake regulations, and national policies applied after major seismic events, including strengthening of existing buildings. Coverage includes seismic hazard studies and methods for mitigation of risk; earthquake source mechanism and strong motion characterization and their use for engineering applications; geological and geotechnical site conditions under earthquake excitations; cyclic behavior of soils; analysis and design of earth structures and foundations under seismic conditions; zonation and microzonation methodologies; earthquake scenarios and vulnerability assessments; earthquake codes and improvements, and much more. This is the Official Publication of the European Association for Earthquake Engineering.
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