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解锁用于风险评估的地震边坡稳定性

Unlocking seismic slope stability for risk assessment.

作者信息

Yiheng Wang, Mohamed Nazri Fadzli, El-Maissi Ahmad Mohamad, Rahmat Siti Rahyla, Mohd Kassim Azleena, Karuppayah Shankar

机构信息

School of Civil Engineering, Engineering Campus, Universiti Sains Malaysia, Penang 14300, Malaysia.

Sichuan University of Science and Engineering, Hui Dong Campus, 643000 Huixing Road, Zigong City, Sichuan Province, China.

出版信息

MethodsX. 2024 Dec 12;14:103108. doi: 10.1016/j.mex.2024.103108. eCollection 2025 Jun.

Abstract

Slope instability represents a substantial secondary hazard post-earthquake, leading to considerable socio-economic losses from the destruction of structures, infrastructure, and human lives. This study addresses the urgent need for precise evaluation of seismic slope stability, a subject that has gained significant attention in earthquake engineering over the past decade. A theoretical framework is proposed that utilizes an improved Sarma method, estimating seismic forces and safety factors based on limit equilibrium theory. A Python-based implementation enhances both computational efficiency and reliability. The enhanced method is validated against the pseudo-static approach, exhibiting strong performance. Moreover, critical elements affecting slope stability, such as slope characteristics and seismic motion parameters, are examined. Although the findings predominantly concentrate on rocky slopes, next research intends to broaden the method's application to multiple slope types, hence facilitating more thorough and effective stability evaluations across different geological contexts.•Deriving seismic slope safety factors based on improved Sarma and Pseudo static methods.•Developing Python programs based on the improved Sarma safety factor method.•Assessing seismic rock slope stability based on calculated Safety Factors.

摘要

边坡失稳是地震后的一种重大次生灾害,会因建筑物、基础设施的损毁以及人员伤亡而导致巨大的社会经济损失。本研究满足了对地震边坡稳定性进行精确评估的迫切需求,在过去十年中,该主题在地震工程领域受到了广泛关注。本文提出了一个理论框架,该框架采用改进的萨尔玛方法,基于极限平衡理论估算地震力和安全系数。基于Python的实现提高了计算效率和可靠性。该改进方法通过与拟静力法对比验证,表现出良好的性能。此外,还研究了影响边坡稳定性的关键因素,如边坡特征和地震运动参数。尽管研究结果主要集中在岩石边坡,但后续研究打算将该方法的应用扩展到多种边坡类型,从而便于在不同地质环境下进行更全面、有效的稳定性评估。

•基于改进的萨尔玛法和拟静力法推导地震边坡安全系数。

•基于改进的萨尔玛安全系数法开发Python程序。

•基于计算出的安全系数评估地震岩石边坡稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7861/11720889/5d7d39eaa9a1/ga1.jpg

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