2011年锡金6.9级地震中钢筋混凝土建筑的地震动参数及地震反应评价

Faisal Mehraj Wani , Jayaprakash Vemuri , Rajaram Chenna
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引用次数: 4

摘要

欧亚板块和印度板块的持续碰撞导致喜马拉雅地区发生了几次地震。2011年锡金6.9 Mw地震对锡金的建筑环境造成了巨大破坏,是由覆盖欧亚板块的板内震源引发的。作为PESMOS项目的一部分,IIT Roorkee建立的台站记录了地震产生的强烈地面运动。本文采用快速傅立叶变换(FFT)和连续小波变换(CWT)对本次地震的近场和远场地震动进行了分析,以评估其关键特性,并检验其时频特征。近场和远场地震波的地震动参数之间的比较突出了近场地震动的不同特征。此外,还研究了近场和远场地震动对符合规范的RC建筑地震反应的影响。非线性时程分析结果表明,框架单元的屋顶位移、位移比和应变均小于规范规定的最大极限。此外,评估了RC框架元件的需求和容量水平,以计算性能比。结果表明,在2011年锡金地震中,钢筋混凝土建筑受到的广泛破坏主要是由于结构的非工程性质,也由于建造的结构不符合抗震设计规范的规定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of ground motion parameters and seismic response of reinforced concrete buildings from the Mw 6.9, 2011 Sikkim earthquake

The continuous collision of the Eurasian plate and the Indian plate has resulted in several earthquakes in the Himalayan region. The 6.9 Mw 2011 Sikkim earthquake, which caused immense damage to the built environment in Sikkim, was triggered by an intraplate source on the overriding Eurasian plate. Strong ground motions from the earthquake were recorded at stations established by IIT Roorkee as part of the PESMOS program. In this paper, near-field and far-field ground motions from this earthquake were analyzed to evaluate their key characteristics and examine their time-frequency features by employing Fast Fourier Transforms (FFTs) and Continuous Wavelet Transforms (CWTs). A comparison between the ground motion parameters of near-field and far-field seismic waves highlights the distinct characteristics of near-field ground motions. Additionally, the impact of near-field and far-field ground motions on the seismic response of a code-compliant RC building is investigated. The results from the non-linear time history analyses indicate that the roof displacements, drift ratio and strain induced in the frame elements are less than the code-prescribed maximum limits. Further, the demand and capacity levels for the RC frame elements were evaluated to compute the performance ratios. The results indicate that the extensive damage to reinforced concrete buildings in the 2011 Sikkim quake was primarily due to the non-engineered nature of the structures and also due to the non-compliance of the built structures to the seismic design code provisions.

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