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Earthquake response and rehabilitation of critical underground lifelines reinforced with cured in place pipe liner technologies under transient ground deformations.

机译:在瞬态地面变形下,采用固化管道衬里技术加强的地下重要生命线的地震响应和修复。

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摘要

Seismic vulnerability and extensive damage to underground lifeline network, causing significant life and economic losses, have been observed and documented in past earthquakes. Seismic retrofit of critical underground pipelines has become an urgent need of our society to improve the performance and serviceability of these critical lifeline systems as well as to enhance public safety. The cured in place pipe (CIPP) liner technology consists of installing flexible polymeric liners with thermosetting resin inside existing pipelines. Compared with traditional expensive and disruptive excavation and replacement of aging and structurally unsound pipelines, CIPP liner technology provides an economic and environmentally friendly alternative for pipeline rehabilitation. However, the lack of verification and quantification of the seismic performance of CIPP liner-reinforced pipelines under transient ground deformations (TGD) remains a critical deficiency in current practice.;Full-scale quasi-static and dynamic tests were performed on nine water-pressurized ductile iron (DI) pipelines (6.0 in. nominal diameter and 30 ft. nominal length) utilizing the two re-locatable shake tables at the NEES Site of University at Buffalo (UB). The DI pipeline specimens were divided into two groups and retrofitted with two types of CIPP liners, the InsituMainRTM liner and the StarlineRTM 2000 liner, respectively, which are commonly used in underground pipeline construction and rehabilitation in the U.S. The primary objective of the experimental program is to investigate the behavior of the DI pipelines with weak joints or circumferential cracks under quasi-static loading and their seismic performance under TGD.;Numerical joint models were developed to simulate the nonlinear hysteretic axial response of the push-on joints strengthened by two different types of CIPP liners under cyclic loadings. The joint models were subsequently incorporated into the simplified pipeline models to simulate the CIPP liner-reinforced joints or cracks in a buried straight continuous or segmental pipeline. Parametric studies were performed to investigate the influence of different components in the pipeline models to the response of the liner-reinforced joint under seismic loadings. Moreover, incremental dynamic analyses (IDA) were performed on straight buried pipelines using an ensemble of 28 pairs of near-fault ground motion records to evaluate and quantify the seismic performance of the CIPP-liner reinforced pipelines under TGD.;Both the experimental results and numerical analyses indicate that CIPP liners provide substantial longitudinal stiffness and strength to the joints of DI pipelines and improve significantly their seismic behavior under high intensity of TGD.
机译:在过去的地震中,已经观察到并记录了地震脆弱性和对地下生命线网络的广泛破坏,造成了巨大的生命和经济损失。关键地下管道的抗震改造已经成为我们社会迫切需要的,以提高这些关键生命线系统的性能和可维护性,并增强公共安全。现场固化管(CIPP)衬里技术包括在现有管道内安装具有热固性树脂的柔性聚合物衬里。与传统的昂贵且破坏性的开挖以及老化和结构不健全的管道的更换相比,CIPP衬管技术为管道修复提供了一种经济,环保的替代方案。然而,目前尚缺乏对瞬态地面变形(TGD)下CIPP衬砌增强管道抗震性能的验证和量化方法。在目前的实践中,这一关键缺陷仍然存在;;对9个水压进行了大规模的准静态和动态测试球墨铸铁(DI)管道(公称直径6.0英寸,公称长度30英尺),利用布法罗大学(UB)NEES站点的两个可重新放置的振动台。 DI管道样本分为两组,并分别使用两种类型的CIPP衬管(InsituMainRTM衬管和StarlineRTM 2000衬管)进行了改装,这两种衬管在美国通常用于地下管道建设和修复中。实验程序的主要目的是研究在准静态载荷下具有弱节理或圆周裂缝的DI管道的性能及其在TGD下的抗震性能。;建立了数值节理模型,以模拟两种不同类型的推力接头的非线性滞后轴向响应循环载荷下CIPP衬套的数量。随后将接头模型合并到简化的管道模型中,以模拟CIPP衬里加固的接头或直埋连续或分段管道中的裂缝。进行了参数研究,以研究在地震荷载作用下管道模型中不同组件对衬砌增强接头响应的影响。此外,利用28对近断层地面运动记录的集合对直埋管道进行了增量动力分析(IDA),以评估和量化在TGD下CIPP衬里管道的抗震性能。数值分析表明,CIPP衬砌为DI管道的接头提供了相当大的纵向刚度和强度,并在TGD高强度下显着改善了其抗震性能。

著录项

  • 作者

    Zhong, Zilan.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 488 p.
  • 总页数 488
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:51:48

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