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Large Axial Deformation Performance of Steel Pipeline Designed for Fault Crossings

机译:专为故障交叉设计的钢管道大型轴向变形性能

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Pipeline susceptibility to ground deformation resulting from natural hazards, such as earthquake-induced surface rupture, lateral spreading and landslides, as well as construction related movements is well-documented. The present need to replace and retrofit existing infrastructure in high risk areas is being addressed through the introduction of a variety of hazard-resilient pipeline systems. This paper reports on a large-scale testing program to characterize the performance of a novel hazard-resilient pipeline structure under large deformation. The experiments were performed at Cornell University's Geotechnical Lifelines Large-Scale Testing Facility and include tests to characterize the axial capacity of a geometric inclusion (or wave feature) for use in continuously welded steel transmission pipelines crossing fault zones. Results from the testing program show that the wave feature can accommodate significant levels of deformation without pipeline rupture or leakage while limiting loss of cross-sectional area and flow capacity.
机译:自然灾害导致地面变形的管道易感性,如地震诱导的表面破裂,横向扩散和滑坡,以及施工相关运动。通过引入各种危险弹性管道系统,正在解决目前需要更换和改造高风险领域的基础设施。本文报告了大规模测试计划,以表征在大变形下新颖的危险弹性管道结构的性能。实验在康奈尔大学的岩土生命线大规模测试设备执行,并且包括测试来表征的几何夹杂物的轴向容量(或波特征),用于在连续焊接钢传输管道交叉断裂带使用。测试程序的结果表明,波特征可以适应没有管道破裂或泄漏的显着变形,同时限制横截面积和流量的损失。

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