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首页> 外文期刊>Cold regions science and technology >Offshore pipeline protection against seabed gouging by ice: An overview
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Offshore pipeline protection against seabed gouging by ice: An overview

机译:海上管道保护,防止海冰刨冰:概述

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摘要

Offshore operators in the Arctic will rely on seafloor installations, notably pipelines, to manage and transport hydrocarbons. In icy waters, these structures are at risk of being damaged by gouging ice features, either icebergs or sea ice ridges. This phenomenon generally occurs when an ice feature drifts into shallower areas and its keel starts plowing the seabed over considerable distances. It is generally agreed that adequate protection against these events can be achieved by burying the pipeline below the seafloor. The question is: what constitutes a safe and economical burial depth for any given location? An answer to this question requires adequate knowledge of material properties (soil, ice keel and pipeline), a reliable handle on the processes taking place during gouging and a consensus on what constitutes acceptable risks. Research on this subject has been on-going for the past few decades, along several fronts. One is by means of field studies, including replicating gouging scenarios in a natural environment, in situ ice characterization, seabed mapping and on-land relict gouge investigations. Another is through laboratory studies, either at single gravity or in a centrifuge. Theoretical analyses and numerical simulations have also contributed to our current understanding of gouging phenomena. Several research groups proposed some form of guidelines for estimating gouging parameters-examples are presented. These methodologies are instructive in that they represent an integrated approach to an improved understanding of gouging phenomena. They point the way to what one may expect in terms of future guidelines to a safe and cost-effective burial depth.
机译:北极的海上作业者将依靠海底设施(尤其是管道)来管理和运输碳氢化合物。在冰冷的水域中,这些结构可能会受到刨冰或冰山脊等冰面构造的损坏。通常,当冰特征漂移到较浅的区域并且其龙骨开始在相当长的距离上翻滚海床时,就会发生这种现象。人们普遍认为,可以通过将管道埋在海底下面来实现针对这些事件的充分保护。问题是:对于任何给定位置,什么构成安全经济的埋葬深度?要回答这个问题,需要对材料特性(土壤,冰龙骨和管道)有足够的了解,对气刨过程中发生的过程有可靠的了解,并就构成可接受风险的共识。在过去的几十年中,一直在几个方面对这个问题进行研究。一种是通过野外研究的方式,包括在自然环境中复制气刨情境,原位冰特征,海床测绘和陆上残go调查。另一种是通过实验室研究,无论是在单重力下还是在离心机中。理论分析和数值模拟也有助于我们对气刨现象的当前理解。几个研究小组提出了某种形式的用于估算气刨参数的指南,并提供了示例。这些方法具有指导意义,因为它们代表了一种综合方法,可以改善对气刨现象的理解。他们指出了通往未来可能会达到的预期的道路,以达到安全且具成本效益的埋葬深度。

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