北窟寺地震动力稳定性分析

IF 3.7 2区 工程技术 Q3 ENGINEERING, ENVIRONMENTAL
Gu Liuyang, Zhang Jingke, Li Li, Chen Weichang, Zhang Lixiang, Ma Xueya, Zou Hongyu
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引用次数: 0

摘要

地震对石窟寺岩体的稳定性起着至关重要的作用。然而,从石窟寺山出发,探讨石窟寺山岩体稳定性与石窟寺岩体稳定性相互作用的研究很少。首先,利用有限差分建模软件FLAC 3D分析了北石窟寺(NGT)的力学和位移特征,重点分析了地震波的影响。分析了地震条件下山体的力学特性、位移云图、位移响应特征和加速度响应特征。模拟结果表明,NGT位置不存在突变,但应力变化较为复杂。在坡面和崖面,特别是NGT部位,观察到明显的应力集中效应,导致该区域相对较大的位移。峰值位移和峰值加速度放大的现象尤为明显。此外,在接触面附近观察到强烈的剪切应力,表明沿这些界面可能发生剪切滑动破坏。本研究不仅为岩洞寺的保护、加固和监测提供了理论依据,而且为岩洞寺岩体稳定性的研究提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seismic dynamic stability analysis of North Grotto Temple

Earthquake has crucial effect in stability of the rock mass in Grotto Temple. However, only a few studies begin with the mountain of Grotto Temple and explore the interactions between rock mass stability of the mountain and that of temple. Firstly, the mechanical and displacement characteristics of North Grotto Temple (NGT) were analyzed, with a particular focus on effects of seismic waves, utilizing the finite difference modelling software FLAC 3D. Subsequently, mechanical properties, displacement nephogram, displacement response characteristics, and acceleration response characteristics of the mountain under seismic conditions were analysed. The simulation results indicate that there was no abrupt displacement at the location of NGT, but the stress changes were complex. Significant stress concentration effects were observed on slope and cliff faces, especially at the site of NGT, leading to relatively large displacements in that area. The phenomena of amplified peak displacement and peak acceleration were particularly pronounced. Additionally, strong shear stresses were observed near contact surfaces, suggesting potential shear sliding failure along these interfaces. This study not only provides theoretical basis for conservation, reinforcement, and monitoring of NGT, but also offers new research perspectives on the stability of rock masses in cave temples.

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来源期刊
Bulletin of Engineering Geology and the Environment
Bulletin of Engineering Geology and the Environment 工程技术-地球科学综合
CiteScore
7.10
自引率
11.90%
发文量
445
审稿时长
4.1 months
期刊介绍: Engineering geology is defined in the statutes of the IAEG as the science devoted to the investigation, study and solution of engineering and environmental problems which may arise as the result of the interaction between geology and the works or activities of man, as well as of the prediction of and development of measures for the prevention or remediation of geological hazards. Engineering geology embraces: • the applications/implications of the geomorphology, structural geology, and hydrogeological conditions of geological formations; • the characterisation of the mineralogical, physico-geomechanical, chemical and hydraulic properties of all earth materials involved in construction, resource recovery and environmental change; • the assessment of the mechanical and hydrological behaviour of soil and rock masses; • the prediction of changes to the above properties with time; • the determination of the parameters to be considered in the stability analysis of engineering works and earth masses.
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