考虑两种破坏模式的胶结砂砾坝地震易损性分析

IF 2.9 4区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Computers and Concrete Pub Date : 2020-12-01 DOI:10.12989/CAC.2020.26.6.483
K. Mahmoodi, A. Noorzad, A. Mahboubi
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引用次数: 1

摘要

大坝是重要的基础设施,在地震作用下能保持稳定。因此,胶结材料坝是一种新兴的坝型,由于具有填土坝和混凝土重力坝两种坝型的优点,在世界范围内得到越来越多的应用。本文采用增量动力分析(IDA)方法,考虑坝-库-基相互作用,考虑拉裂和基缝滑动两种破坏模式,对水泥砂石坝的抗震性能进行了评价。考虑地震的不确定性,在一系列地震动记录下对坝体进行了分析,研究了摩擦角对坝体滑动的影响以及基础的可变形性对坝体响应的影响。以土耳其Cindere大坝为例进行分析,确定大坝抗震性能等级对应的各种极限状态,估算其地震脆弱性。结果表明,在最大可信地震(MCE)作用下,Cindere大坝可能发生严重滑动。此外,在这种强度下,坝面大多会开裂。结果表明,随着摩擦角的增大,坝基间滑动的概率减小,而拉伸开裂的概率增大。基础加劲增加了坝体滑动的概率,但降低了坝体的拉伸损伤。
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Seismic fragility analysis of a cemented Sand-gravel dam considering two failure modes
Dams are vital infrastructures that are expected to maintain their stability during seismic excitations. Accordingly, cemented material dams are an emerging type, which are being increasingly used around the world owing to benefiting from advantages of both earth-fill and concrete gravity dams, which should be designed safely when subjected to strong ground motion. In the present paper, the seismic performance of a cemented sand and gravel (CSG) dam is assessed using incremental dynamic analysis (IDA) method by accounting for two failure modes of tension cracking and base joint sliding considering the dam-reservoir-foundation interactions. To take the seismic uncertainties into account, the dam is analyzed under a suite of ground motion records and then, the effect of friction angle for base sliding as well as deformability of the foundation are investigated on the response of dam. To carry out the analyses, the Cindere dam in Turkey is selected as a case study, and various limit states corresponding to seismic performance levels of the dam are determined aiming to estimate the seismic fragilities. Based on the results, sliding of the Cindere dam could be serious under the maximum credible earthquake (MCE). Besides, dam faces are mostly to be cracked under such level of intensity. Moreover, the results indicate that as friction angle increases, probability of sliding between dam and foundation is reduced whereas, increases tensile cracking. Lastly, it is observed that foundation stiffening increases the probability of dam sliding but, reduces the tensile damage in the dam body.
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来源期刊
Computers and Concrete
Computers and Concrete 工程技术-材料科学:表征与测试
CiteScore
8.60
自引率
7.30%
发文量
0
审稿时长
13.5 months
期刊介绍: Computers and Concrete is An International Journal that focuses on the computer applications in be considered suitable for publication in the journal. The journal covers the topics related to computational mechanics of concrete and modeling of concrete structures including plasticity fracture mechanics creep thermo-mechanics dynamic effects reliability and safety concepts automated design procedures stochastic mechanics performance under extreme conditions.
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