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Shaking table tests on discrepant responses of shaft-tunnel junction in soft soil under transverse excitations

机译:振动激励下软土竖井-隧道连接处差异响应的振动台试验

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摘要

Due to the special configurations of the shaft-tunnel junction, discrepant responses of the shaft and the tunnel will arise when earthquakes strike. This paper presents shaking table tests addressing this discrepancy and its influence on the structures. The model system is designed to reproduce the relative stiffness and the relative mass of the prototype system. Two site-specific synthetic earthquake motions are adopted as seismic excitations along the transverse direction of the tunnel model. The discrepant responses are revealed by the shaft's and the tunnel's acceleration responses. The extent of discrepancy is quantified by correlation coefficients, and its influence on structural performance is evaluated. Consequently, the longitudinal circumferential-joint extensions and the transverse dynamic strains are raised at the shaft-tunnel junction. While the raised strains are relatively small, the longitudinal circumferential joint extensions pose a threat to structural safety. A simplified model based on the solution for Euler-Bernoulli beam on Winkler foundations is put forward to establish the relation of circumferential-joint extensions and shaft-tunnel relative displacements. Validation of the proposed model is conducted by comparison of test results and analytical results.
机译:由于竖井-隧道交界处的特殊配置,地震发生时竖井和隧道的响应会出现差异。本文介绍了振动台测试,以解决这种差异及其对结构的影响。该模型系统旨在重现原型系统的相对刚度和相对质量。沿隧道模型的横向采用了两个特定地点的合成地震运动作为地震激励。竖井和隧道的加速度响应揭示了不同的响应。差异程度由相关系数量化,并评估其对结构性能的影响。因此,在竖井-隧道连接处,纵向周向接头延伸和横向动态应变升高。尽管所产生的应变相对较小,但纵向周向接头延伸对结构安全构成了威胁。提出了一种基于Winkler地基上Euler-Bernoulli梁解的简化模型,以建立周向节理延伸与竖井隧道相对位移的关系。通过比较测试结果和分析结果来验证所提出模型的有效性。

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