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首页> 外文期刊>Tunnelling and underground space technology >Embankment responses to shield tunnelling considering soil-structure interaction: case studies in Hangzhou soft ground
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Embankment responses to shield tunnelling considering soil-structure interaction: case studies in Hangzhou soft ground

机译:考虑土-结构相互作用的路堤对盾构施工的响应:以杭州软土为例

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摘要

As more and more under-river tunnels are constructed in urban areas, the deformations and potential damage of existing embankments due to tunnelling have become a major concern. This problem is complex because not only does tunnelling affect the existing embankments, but their presence also alters tunnelling-induced ground movements. An analytical method, which takes account of the effects of the embankment's self-weight, the property of the soil-embankment interface, and the embankment's bending and axial stiffness, is put forward to estimate the embankment's deflections and horizontal strains due to tunnelling. Subsequently, a procedure is proposed to identify the embankment's damage level based on its calculated maximum tensile strain. In the end, case studies of three embankments in Hangzhou soft ground are conducted to examine and validate the analytical method and the damage identification procedure. Further parametric studies show that the embankment's bending stiffness has a significant effect on its deflections and damage level, while the influence of self-weight is mild.
机译:随着在城市地区建造越来越多的地下河隧道,由于隧道施工引起的现有路堤的变形和潜在破坏已成为主要问题。这个问题很复杂,因为隧道不仅会影响现有路堤,而且它们的存在也会改变隧道引起的地面运动。提出了一种分析方法,该方法考虑了路堤的自重,土-路堤界面的特性以及路堤的弯曲和轴向刚度的影响,以估算路堤在隧道作用下的挠度和水平应变。随后,提出了一种程序,可基于计算出的最大拉伸应变来确定路堤的损坏程度。最后,以杭州市软土地基上的三个路堤为例,对分析方法和损伤识别程序进行了检验和验证。进一步的参数研究表明,路堤的抗弯刚度对其挠度和破坏程度有显着影响,而自重的影响很小。

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