Characterization of Ground Response and Liquefaction for Kathmandu City Based on 2015 Earthquake Using Total Stress and Effective Stress Approach

IF 0.5 Q4 ENGINEERING, GEOLOGICAL
S. Kumar, P. Acharya, P. Dammala, Murali Krishna Adapa
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引用次数: 0

Abstract

This chapter presents the seismic vulnerability of Kathmandu City (Nepal), based on Nepal 2015 earthquake, in terms of the ground response and liquefaction potential. The spatially well-distributed 10-boreholes and ground motions of Mw 7.8 Nepal 2015 earthquake recorded at five different stations were adopted for the analysis. The range of peak ground acceleration and peak spectral acceleration were in the order of 0.21g-0.42g and 0.74g-1.50g, respectively. Liquefaction potential of the sites were computed using both semi-empirical approach and liquefaction potential index (LPI). LPI shows that the 6 sites out of 10 sites are at high risk of liquefaction.
基于总应力和有效应力法的2015年加德满都地震地表反应和液化特征
本章以尼泊尔2015年地震为基础,从地面反应和液化潜力方面介绍了尼泊尔加德满都市的地震易损性。采用尼泊尔2015年5个不同台站记录的10钻孔和地面运动数据进行分析。地面加速度峰值范围为0.21g-0.42g,光谱加速度峰值范围为0.74g-1.50g。采用半经验法和液化势指数(LPI)计算了液化点的液化势。LPI显示,10个站点中有6个站点存在液化高风险。
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
11
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