美国-加州奥罗维尔填土坝三维地震变形-剪切应变-膨胀特性

IF 2.4 3区 工程技术 Q2 ENGINEERING, CIVIL
M. Karalar, Murat Çavuşli
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引用次数: 10

摘要

填土坝的竖向位移和剪切应变的结构设计在结构工程问题中具有重要的意义。此外,远断层地震与近断层地震一样,对EF坝的震害性能也有显著的地震影响。为此,本研究对考虑不同远断层地震动的Oroville大坝进行了三维地震损伤性能评价。奥罗维尔大坝建于美国加利福尼亚州,高度为234.7米(770英尺)。基于有限差分法,利用FLAC3D软件建立了奥罗维尔大坝的三维模型。为了表示离散面之间的相互作用情况,在坝体与基础之间采用了特殊的界面单元。为进行非线性地震分析,对大坝主表面确定了非反射地震边界条件(自由场和静场)。考虑了奥罗维尔大坝满库条件下6种不同的远断层地震动。根据非线性地震分析结果,确定并详细评价了远断层地震动对Oroville EF坝非线性地震沉降和剪切应变行为的影响。可见,远断层地震对EF坝的沉降-剪切应变行为具有非常显著的地震影响,并对坝体表面的膨胀行为产生至关重要的地震损伤。此外,本文还提出了远断层地震动在模拟电磁坝时不应被忽略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three dimensional seismic deformation-shear strain-swelling performance of America-California Oroville Earth-Fill Dam
Structural design of the vertical displacements and shear strains in the earth fill (EF) dams has great importance in the structural engineering problems. Moreover, far fault earthquakes have significant seismic effects on seismic damage performance of EF dams like the near fault earthquakes. For this reason, three dimensional (3D) earthquake damage performance of Oroville dam is assessed considering different far-fault ground motions in this study. Oroville Dam was built in United States of America-California and its height is 234.7 m (770 ft.). 3D model of Oroville dam is modelled using FLAC3D software based on finite difference approach. In order to represent interaction condition between discrete surfaces, special interface elements are used between dam body and foundation. Non-reflecting seismic boundary conditions (free field and quiet) are defined to the main surfaces of the dam for the nonlinear seismic analyses. 6 different far-fault ground motions are taken into account for the full reservoir condition of Oroville dam. According to nonlinear seismic analysis results, the effects of far-fault ground motions on the nonlinear seismic settlement and shear strain behaviour of Oroville EF dam are determined and evaluated in detail. It is clearly seen that far-fault earthquakes have very significant seismic effects on the settlement-shear strain behaviour of EF dams and these earthquakes create vital important seismic damages on the swelling behaviour of dam body surface. Moreover, it is proposed that far-fault ground motions should not be ignored while modelling EF dams.
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来源期刊
Geomechanics and Engineering
Geomechanics and Engineering ENGINEERING, CIVIL-ENGINEERING, GEOLOGICAL
CiteScore
5.20
自引率
25.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Geomechanics and Engineering aims at opening an easy access to the valuable source of information and providing an excellent publication channel for the global community of researchers in the geomechanics and its applications. Typical subjects covered by the journal include: - Analytical, computational, and experimental multiscale and interaction mechanics- Computational and Theoretical Geomechnics- Foundations- Tunneling- Earth Structures- Site Characterization- Soil-Structure Interactions
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