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Effect of tunnel-building separation distance on the dynamic soil-structure interaction response

机译:隧道-建井间距对动态土-结构交互响应的影响

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? 2024 The Author(s)Understanding how buried structures respond to cyclic loading is crucial for designing earthquake-resistant underground infrastructure. The complexity of the dynamic response of these underground structures is accentuated when accounting for their interaction with adjacent buildings. This study focuses on the impact of the lateral distance between a shallow rectangular tunnel and an adjacent residential structure on dynamic soil-structure interaction, employing two dynamic centrifuge tests. Particle Image Velocimetry technique was adopted to observe the developed mechanisms of liquefied soil deformation, tunnel uplift, and foundation settlement. Results show the pronounced effects on soil deformation above the tunnel crown with a reduction in the tunnel-building separation distance. The distribution of excess pore pressure along the tunnel lining will be presented. Tunnel manifested additional lateral movement and reduced uplift when the adjacent building was in close proximity. A decrease in the tunnel-building distance contributed to a reduction of building rotation, primarily due to the significant mitigation of non-uniform settlement under the footing. Overall, the soil deformation mechanism around the tunnel and the building will be shown to change depending on the separation distance between them.
机译:?2024 作者了解埋地结构如何响应循环载荷对于设计抗震地下基础设施至关重要。在考虑这些地下结构与相邻建筑物的相互作用时,这些地下结构的动态响应的复杂性会更加突出。本研究采用两种动态离心机测试,重点介绍浅矩形隧道与相邻住宅结构之间的横向距离对动态土-结构相互作用的影响。采用粒子图像测速技术观察液化土变形、隧道隆起和地基沉降的发展机制。结果表明,随着隧道建造间隔距离的减小,对隧道拱顶上方土壤变形的影响显著。将介绍沿隧道衬砌的超孔隙压力分布。当相邻建筑物靠近时,隧道表现出额外的横向移动和减少的隆起。隧道建造距离的减少有助于减少建筑物的旋转,主要是由于地基下不均匀沉降的显著缓解。总体而言,隧道和建筑物周围的土壤变形机制将根据它们之间的间隔距离而变化。

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