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A simplified analysis for deformation behavior of buried pipelines considering disturbance effects of underground excavation in soft clays

机译:考虑软土地下开挖扰动效应的地下管道变形特性简化分析

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Underground excavation, such as tunneling and deep foundation pit, will no doubt induce the soil disturbance and have result in uneven settlements of adjacent buried pipelines which adversely affect and even damage the structures. In order to explicitly point out construction interaction mechanism and rapidly predict the structure mechanical behavior, a simplified displacement-controlled two-stage method and stress-controlled two-stage method are presented for determining the deformation behavior of pipeline structures caused by underground excavation in soil clays. According to tunneling project, the free soil deformation calculated by the displacement-controlled boundary element solution is used to estimate the soil disturbance effects of underground excavation. The oval-shaped ground deformation pattern is imposed to the tunnel opening to consider the nonuniform convergence characters. According to foundation pit project, the free soil stress based on the Mindlin solution is used to predict the soil disturbance effects of underground excavation. The situations that the excavation unloading center is not acting on the pipeline axis and that the excavation boundary and pipeline axis are formed with an arbitrary angle can fully be considered. Then, the free soil deformation and free soil stress are imposed onto existing pipelines to analyze the interaction mechanics between the disturbance soil and buried structures. The accuracy of proposed method is demonstrated with existing calculation results, centrifuge model tests, and site investigation data. In addition, the parametric analyses for the deformation influence factors of existing tunnel induced by foundation pit excavation, including the horizontal distance between the excavation boundary and tunnel axis, the tunnel buried depth, the tunnel bending stiffness, and the crossing angle between the excavation boundary and tunnel axis, are presented to demonstrate the performance of the proposed method. The results indicate that the proposed method can be used to estimate the mechanical behavior of buried pipelines considering disturbance effects of underground excavation with higher precision.
机译:诸如隧道和深基坑之类的地下开挖无疑会引起土壤扰动,并导致相邻地下管道的沉降不均匀,从而对结构产生不利影响,甚至造成破坏。为了明确指出施工相互作用的机理并快速预测结构的力学行为,提出了一种简化的位移控制两阶段法和应力控制两阶段法来确定地下地下管道引起的管道结构的变形行为。黏土。根据隧洞工程,采用位移控制边界元解计算得到的自由土变形量来估算地下基坑的扰动效果。考虑隧道的非均匀会聚特性,将椭圆形地面变形图样施加到隧道洞口。根据基坑工程,利用基于Mindlin解的自由土应力来预测地下基坑的土壤扰动效果。可以充分考虑开挖卸荷中心不作用在管线轴线上并且开挖边界和管线轴线以任意角度形成的情况。然后,将自由土变形和自由土应力施加到现有管道上,以分析扰动土与埋藏结构之间的相互作用机理。现有计算结果,离心机模型试验和现场调查数据证明了该方法的准确性。另外,对基坑开挖引起的既有隧道变形影响因素进行参数分析,包括开挖边界与隧道轴线之间的水平距离,隧道的埋深,隧道的弯曲刚度以及开挖边界之间的交叉角。和隧道轴,提出来证明该方法的性能。结果表明,该方法可用于考虑地下开挖扰动影响的地下管道力学行为,以较高的精度进行估算。

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