通过大型空间加载系统对考虑完整边界条件的曲面桥梁进行大规模混合试验

IF 4.3 2区 工程技术 Q1 ENGINEERING, CIVIL
Yingpeng Tian, Jie Chen, Chunbo Du, Dan Xu, Huimeng Zhou, Zhiguo Sun, Quanwang Li, Dongsheng Wang, Tao Wang
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引用次数: 0

摘要

小半径曲线桥梁主要用于立交桥坡道,这些坡道在空间上不规则,通常具有非常复杂的地震行为。由于需要大型振动台,要重现这种行为并不容易。混合试验是解决这一问题的最有效方法之一,它将感兴趣的结构元素视为物理试验的下部结构,而其余部分则通过数值模拟来实现。本文首先基于 OpenFresco 框架开发了一个混合测试系统,其中一个桥墩被视为测试的下部结构,其余部分由 OpenSees 模拟。然后开发了一种新颖的空间加载装置(SLD),配置为斯图尔特模式,以实现下部结构之间的边界条件。提出了力-位移混合控制、在考虑加载点偏移的同时进行几何变换以及实现外部位移控制的控制方案,并通过多轮混合测试进行了验证。实验结果表明,包括加载控制子系统和混合控制子系统在内的实验系统能够准确实现加载指令。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-scale hybrid test of a curved bridge considering complete boundary condition by a large spatial loading system

Small-radius curved bridges are mostly used for overpass ramps, that are spatially irregular and usually have very complex seismic behavior. It is not easy to reproduce such behavior because of the need for large-scale shaking tables. The hybrid test is one of the most effective approaches for solving this problem by considering the structural elements of interest as physically tested substructure while the rest is numerically simulated. In this paper, a hybrid test system was first developed based on the OpenFresco framework, where one of the piers was considered as the tested substructure, and the rest was simulated by OpenSees. A novel spatial loading device (SLD), configured as the Stewart pattern, was then developed to achieve the boundary conditions between substructures. The control schemes to perform the force-displacement mixed control, conduct the geometric transformation while considering the load point offset, and achieve an external displacement control were proposed and validated through several rounds of hybrid testing. The experimental results indicate that the experimental system including loading control subsystem and hybrid control subsystem can realize the loading command accurately.

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来源期刊
Earthquake Engineering & Structural Dynamics
Earthquake Engineering & Structural Dynamics 工程技术-工程:地质
CiteScore
7.20
自引率
13.30%
发文量
180
审稿时长
4.8 months
期刊介绍: Earthquake Engineering and Structural Dynamics provides a forum for the publication of papers on several aspects of engineering related to earthquakes. The problems in this field, and their solutions, are international in character and require knowledge of several traditional disciplines; the Journal will reflect this. Papers that may be relevant but do not emphasize earthquake engineering and related structural dynamics are not suitable for the Journal. Relevant topics include the following: ground motions for analysis and design geotechnical earthquake engineering probabilistic and deterministic methods of dynamic analysis experimental behaviour of structures seismic protective systems system identification risk assessment seismic code requirements methods for earthquake-resistant design and retrofit of structures.
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