Kinematic Responses of Lead-caulked Joints for Cast Iron Pipelines Subjected to Strike-slip Faulting

Dian-Qing Li, Ning Zhao, Wenqi Du, Zijun Cao
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Abstract

Buried cast iron pipelines are susceptible to damage at joints under fault movements. In this paper, a new three-dimensional soil-pipe continuum model for segmented pipelines undergoing fault rupture is introduced, in which both the nonlinear behavior of lead-caulked joints and post-peak softening behavior of dense sand are properly characterized. The rationality of the developed numerical model is validated against experimental results reported in the literature. Parametric analyses indicate that ignoring the strain softening behavior of soil would underestimate the maximum joint rotations, and the parameters of fault-pipe intersection angle, cast iron-lead adhesion, and burial depth play a notable role on the magnitude of joint kinematics. Numerical fault rupture analyses are then conducted for cast iron pipelines with nominal diameters ranging from 900 mm to 1,500 mm. Based on the numerical results, predictive solutions are developed for estimating the maximum axial translations and joint rotations under fault movements. The residuals of the proposed solutions are generally unbiased. The proposed solutions can be used to evaluate the maximum joint kinematics in terms of axial translations and joint rotations for large-diameter cast iron pipelines with lead-caulked joints undergoing strike-slip fault ruptures.
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铸铁管道铅密封接头在发生击滑断层时的运动响应
埋地铸铁管道在断层运动时容易在接头处发生损坏。本文介绍了一种新的三维土壤-管道连续模型,该模型适用于发生断层破裂的分段管道,其中正确描述了铅丝密封接头的非线性行为和致密砂的峰值后软化行为。根据文献报道的实验结果验证了所开发数值模型的合理性。参数分析表明,忽略土壤的应变软化行为会低估接头的最大旋转量,而断层-管道交角、铸铁-铅块粘附力和埋深等参数对接头运动学的大小有显著影响。然后对名义直径为 900 毫米至 1,500 毫米的铸铁管道进行了断层破裂数值分析。根据数值结果,制定了预测解决方案,用于估算断层运动下的最大轴向平移和接头旋转。所提方案的残差一般无偏。所提出的解决方案可用于评估大直径铸铁管道在发生走向滑动断层破裂时的最大轴向平移和接头旋转运动学特性。
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