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Pipe Performance and Experiences during Seismic Events in New Zealand over the Last 25 Years

机译:过去25年中新西兰地震事件中的管道性能和经验

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Functioning pipeline systems are a cornerstone of urban human communities, to bring in the clean water on demand for drinking, washing and sanitary needs, and in turn remove the used water from drains, waste, and stormwater sources. If the pipe system is suddenly rendered partially or totally non-functional, such as by seismic event; critical disruption of the community and public health danger may result. Pipeline systems carry many requirements for design, including hydrostatic stresses, basic internal and external load bearing capacity, or axial loads from trenchless installation methods, such as horizontal directional drilling. Seismic events however, provide arguably the most arduous demands on a buried pipeline asset, owing to the extreme ground forces, and variable ground movements that are possible, and critical need to restore function to damaged pipe systems as quickly as possible. Pipe system design, materials, install methods, repair methodologies and practical implications of operation are all directly affected by seismic activity. This paper includes first-hand observations and experiences, specific to pipeline systems in New Zealand seismic events, covering a 25 year period, from 1987 to 2012.These events provide us with a unique opportunity to practically evaluate the seismic performance of pipe materials and joint systems, that either survived, or were damaged and repaired, or were totally destroyed and abandoned, specific to New Zealand seismic conditions. This paper concludes with some overarching lessons learned from these events, in regards to pipe systems.
机译:运转正常的管道系统是城市人类社区的基石,可按需提供清洁水以满足饮用,洗涤和卫生需求,进而从排水沟,废物和雨水源中去除用过的水。如果管道系统突然(例如由于地震事件)部分或全部无法正常工作;可能会导致社区严重破坏和公共卫生危害。管道系统对设计有许多要求,包括静水压力,基本的内部和外部承载能力,或非开挖安装方法(例如水平定向钻井)产生的轴向载荷。但是,由于极端的地面力和可能发生的地面运动,地震事件对地下管道资产提出了最艰巨的要求,并且迫切需要尽快恢复受损管道系统的功能。管道系统的设计,材料,安装方法,维修方法和操作的实际意义都直接受到地震活动的影响。本文包括针对1987年至2012年这25年期间新西兰地震事件中的管道系统的第一手观察和经验,这些事件为我们提供了一个独特的机会来实际评估管道材料和接头的抗震性能特定于新西兰地震条件的已幸存,已损坏或已修复或已完全毁坏和废弃的系统。本文最后总结了从这些事件中学到的有关管道系统的经验教训。

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