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Buried pipeline responses to ground displacements induced by adjacent static pipe bursting

机译:地下管道对相邻静态管道爆破引起的地面位移的响应

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摘要

To minimize disruptions of economic and social activities on the ground surface in urban areas, trenchless techniques such as pipe bursting are often considered for underground pipeline construction, rehabilitation, and renewal of existing utility services. Pipe bursting, however, inevitably induces outward displacements of surrounding soil, and subsequently leads to potential damages to adjacent structures and utilities. This paper carries out finite element (FE) analyses to investigate effects of the static pipe bursting-induced ground displacements on adjacent pipelines. In total 760 FE parametric studies are performed to encompass various combinations of ground settlement profiles, pipe dimensions, material properties, and soil properties that are typical of utility pipelines and pipe bursting in urban areas. The FE parametric results are summarized in a dimensionless plot of relative pipe-soil stiffness versus ratio of maximum pipe curvature to maximum ground curvature, which can be used to directly estimate the maximum pipe bending strain and (or) directly evaluate pipeline responses to adjacent pipe bursting. A worked example is provided to illustrate usage of the dimensionless plot. It is further found that the pipe-soil interaction is similar for pipe bursting and tunneling, and the effects of both pipe bursting and tunneling on adjacent pipelines can be assessed using a unified dimensionless plot. Effects of the intersection angle between the pipe bursting centerline and adjacent pipeline are explored. The pipe responses are shown to be underestimated or unconservative when only the perpendicular case is considered in the analysis.
机译:为了最大程度地减少城市地区地面上的经济和社会活动的干扰,地下管道的建设,修复和现有公用事业服务的更新通常考虑使用无破裂技术,例如爆管。然而,管爆裂不可避免地引起周围土壤的向外移位,并随后导致对相邻结构和设施的潜在破坏。本文进行了有限元分析,以研究静态管道爆破引起的地面位移对相邻管道的影响。总共进行了760篇FE参数研究,以涵盖地面沉降剖面,管道尺寸,材料特性和土壤特性的各种组合,这些组合是城市地区公用事业管道和管道爆裂的典型特征。有限元参数结果以无量纲的管道相对土壤刚度对最大管道曲率与最大地面曲率之比的形式汇总,可用于直接估计最大管道弯曲应变和(或)直接评估管道对相邻管道的响应爆裂。提供了一个工作示例来说明无量纲图的用法。进一步发现,管-土相互作用对于管爆破和隧穿是相似的,并且可以使用统一的无量纲图来评估管爆破和隧穿对相邻管道的影响。探索了爆管中心线与相邻管线之间的交角的影响。当在分析中仅考虑垂直情况时,表明管道响应被低估或保守。

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