小型土坝砌块加固的离心振动实验和有限元分析研究

IF 1.1 Q3 ENGINEERING, CIVIL
Bohan Wang, Yoshiyuki Mohri, H. Tagashira, Akira Izumi, Tadatsugu Tanaka
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引用次数: 0

摘要

在这项研究中,我们进行了一系列离心机模型试验和动态响应分析,以阐明由加固土抗压技术组成的复合结构的影响,该结构采用了砌块和加固土方法,安装在一个老化水库的坡脚端。研究的目的是评估堤坝的地震响应。实验测试包括在无加固堤坝和砌块加固堤坝上进行的振动台测试,这两种堤坝都处于蓄水状态。对路堤的动态行为以及滑移破坏的传播进行了比较和验证。通过使用有限元法进行弹塑性动态响应分析,研究了滑移面的位置、堤坝的沉降以及实验得出的动态响应特征,从而明确了反措施结构的影响。结果表明,砌块及其后面的加固措施极大地提高了路堤边坡的稳定性,抑制了路堤上部的剪切破坏,有效防止了路堤的整体变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Centrifugal shaking experiments and FEM analytical investigation on masonry block reinforcement of small earth dams
In this research, a series of centrifuge model tests and dynamic response analyses were conducted to elucidate the impact of a composite structure comprised of a reinforced earth-pressure-resistant technique, using both masonry blocks and the reinforced earth method, which was installed at the slope toe end of an aged reservoir. The purpose of the study was to evaluate the seismic response of the embankment. The experimental tests included shaking table tests that were performed on an unreinforced embankment as well as a masonry block reinforced embankment, both in a water storage condition. The dynamic behavior of the embankment, as well as the propagation of slip failure, were compared and verified. Through the use of elasto-plastic dynamic response analysis, using the finite element method, the location of the slip surface, the settlement of the embankment and the dynamic response characteristics, as obtained experimentally, were examined to clarify the effects of the counter measure structure. The results indicate that the implementation of masonry blocks and the reinforcement installed behind them greatly improve the stability of the slope of the embankment, suppress the shear failure of the upper part of the embankment, and effectively prevent overall deformation of the embankment.
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来源期刊
Archives of Civil Engineering
Archives of Civil Engineering ENGINEERING, CIVIL-
CiteScore
1.50
自引率
28.60%
发文量
0
审稿时长
24 weeks
期刊介绍: ARCHIVES OF CIVIL ENGINEERING publish original papers of the theoretical, experimental, numerical and practical nature in the fields of structural mechanics, soil mechanics and foundations engineering, concrete, metal, timber and composite polymer structures, hydrotechnical structures, roads, railways and bridges, building services, building physics, management in construction, production of construction materials, construction of civil engineering structures, education of civil engineers.
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