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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Multi-point shaking table test for long tunnels subjected to non-uniform seismic loadings - Part I: Theory and validation
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Multi-point shaking table test for long tunnels subjected to non-uniform seismic loadings - Part I: Theory and validation

机译:地震荷载不均匀的长隧道多点振动台试验-第一部分:理论与验证

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The spatially varying ground motions can significantly influence the dynamic response of extended structures such as tunnels. However, current knowledge on the effects of non-uniform seismic excitations on long tunnels is limited to analytical or numerical methods and lack of experimental or field data. This paper presents a confirmatory experimental method for long tunnels subjected to non-uniform excitations, using four independent shaking tables worked in coordination as a large linear shaking table array. The discrete multi-point input mechanism is deemed critical to accomplish a continuous and coordinated excitation over a long tunnel. A 40m-long segmental model container is developed to realize the equivalent transformation from the four independent shaking tables into continuous excitations. The dimension of the segmental model container as well as the connection between each of its components is determined after significant analytical and numerical simulations. A series of tests are conducted to investigate the wave passage effect along the length of the segmental model container. Results show that the wave passage effect is accurately reproduced with the test setup and the acceleration input scheme, and thus the validation of the design of the multi-point test system is approved.
机译:空间变化的地面运动会显着影响诸如隧道等扩展结构的动力响应。但是,当前关于不均匀地震激励对长隧道的影响的当前知识仅限于分析或数值方法,并且缺乏实验或现场数据。本文提出了一种验证性的试验方法,该方法用于长隧道的非均匀激发,它使用四个独立的振动台协同工作,形成大型线性振动台阵列。离散多点输入机制被认为对于在长隧道上实现连续且协调的激励至关重要。开发了一个40m长的分段模型容器,以实现从四个独立的振动台到连续激励的等效转换。分段模型容器的尺寸以及每个组件之间的连接是通过大量的分析和数值模拟后确定的。进行了一系列测试以研究沿分段模型容器的长度的波通过效应。结果表明,通过测试装置和加速度输入方案可以准确地再现波的传播效果,因此,对多点测试系统的设计进行了验证。

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