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Centrifuge Modeling of Deep Excavations and Their Interaction With Adjacent Buildings

机译:深基坑离心模型及其与相邻建筑物的相互作用

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摘要

Major cities in the world are experiencing a rapid growth in population while becoming increasingly overcrowded and congested. In recent years, this has created a huge demand for underground infrastructure, which often involves the design of major mass transit tunnel systems; these tunnel systems (underground tunnels and metro stations) are becoming increasingly necessary to construct in very close proximity to existing buildings. The prediction of excavation-induced deformations, therefore, becomes a key issue in the planning and design process for these schemes. However, current design approaches are conservative and often lead to unnecessary concern and expenditure in the design and provision of protective measures. A better understanding of the mechanisms involved in the excavation soil-structure interaction could reduce costs and help avoid potential problems. A series of small-scale model tests was carried out in the geotechnical centrifuge at Cambridge University to investigate the interaction between excavations and model buildings. Excavations (simulated by adopting a novel two-fluid technique) in a "free field" were also undertaken to assess the difference between free-field ground movements and those affected by a stiff model building. A detailed description of the centrifuge models and test procedures is presented in this paper, followed by the presentation of test results that demonstrate the effect of the stiffness of the model building on the excavation-induced displacements.
机译:世界各主要城市的人口都在快速增长,同时人满为患和拥挤。近年来,这产生了对地下基础设施的巨大需求,这常常涉及主要的大众运输隧道系统的设计。这些隧道系统(地下隧道和地铁站)越来越需要在非常接近现有建筑物的位置进行施工。因此,开挖引起的变形的预测成为这些方案的规划和设计过程中的关键问题。然而,当前的设计方法是保守的,并且常常导致在设计和提供保护措施方面不必要的关注和花费。更好地了解开挖土壤与结构相互作用的机制可以降低成本并有助于避免潜在的问题。在剑桥大学的岩土离心机中进行了一系列小型模型测试,以研究基坑与模型建筑物之间的相互作用。在“自由场”中还进行了挖掘(通过采用新颖的双流体技术进行模拟),以评估自由场地面运动与受刚性模型建筑物影响的运动之间的差异。本文介绍了离心机模型和测试程序的详细说明,然后介绍了测试结果,这些结果证明了模型的刚度对基坑引起的位移的影响。

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