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Performance of ductile iron push-on joints rehabilitated with CIPP liner under repetitive and seismic loadings

机译:反复荷载和地震荷载下用CIPP衬套修复的球墨铸铁推入式接头的性能

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The cured in place pipe (CIPP) liner technology is to install flexible polymeric liners with thermosetting resin inside existing pipelines. Compared with traditional methods of pipeline retrofits, CIPP provides an economic and environmentally friendly alternative for pipeline rehabilitation. However, the lack of proper constitutive models of the push-on joints and the CIPP-liner reinforced joints remains a critical deficiency in current numerical simulations of buried segmental pipelines. This paper presents new constitutive models of ductile iron (DI) push-on joints, before and after reinforced with one type of the CIPP liners, commonly used in pipeline retrofits. The proposed models were calibrated from the full-scale quasi-static tests performed on water-pressurized DI pipelines with push-on joints. These new joint models, considering strength degradation and energy dissipation of the joint, well characterizes the longitudinal behavior of the push-on joint and the liner-strengthened joints under repetitive axial loading, which primarily represents the expansion and contraction effects of the joints due to thermal effects or seismic waves traveling along the buried pipelines. Moreover, this paper also provides a rational procedure for evaluating the seismic performance of buried pipeline with different push-on joints. The proposed numerical procedure could be generally applied to quantify the seismic performance of buried straight pipelines incorporating the proposed joint models under seismic wave propagation. Numerical results indicate that the CIPP liner can significantly improve the seismic performance of the push-on joints subjected earthquake induced transient ground deformations.
机译:现场固化管(CIPP)衬里技术是在现有管道内安装具有热固性树脂的柔性聚合物衬里。与传统的管道改造方法相比,CIPP为管道修复提供了一种经济,环保的替代方案。但是,在目前的分段管埋藏数值模拟中,缺乏合适的推入式接头和CIPP衬里钢筋本构模型仍然是一个关键缺陷。本文介绍了用一种类型的CIPP衬里加固的球墨铸铁(DI)压入式接头的本构模型,该类型通常用于管道翻新。拟议的模型是根据在带推力接头的水压DI管道上进行的全尺寸准静态测试进行校准的。这些新的接头模型考虑了接头的强度下降和能量耗散,很好地表征了重复接头在轴向载荷作用下推入式接头和衬套加强接头的纵向行为,这主要表示了接头的伸缩作用。沿地下管道传播的热效应或地震波。此外,本文还为评估具有不同推入式接头的地下管道的抗震性能提供了合理的程序。所提出的数值程序可以被普遍地用来量化在地震波传播下结合所提出的联合模型的地下直管的抗震性能。数值结果表明,CIPP衬砌可以显着改善受地震引起的瞬态地面变形的顶推式节点的抗震性能。

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