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Measurement of platform conductor preload in streamlining the life extensions of ageing offshore wells

机译:平台导线预加载在精简近海井的生命延伸方面的测量

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The life extension of ageing oil wells is becoming an ever more crucial part of an operator's activities in recent years, mainly due to slumping oil price which discourages new exploration and the potential extended operation of some older fields with sufficient producing capacity still remaining. The conductor forms one of the primary structural components of wells and its deterioration over time warrants immediate integrity assessment and rehabilitation plans. The construction residual loading or preloads on the conductor are calculated as per standard guidelines and by analytical means during its design and installation phase, but may not be realistic when assessing aged conductors, due to the high levels of over-conservatism built in to address the various uncertainties during the well drilling phase, hence a more practical means of evaluating this residual load is required in carrying out the integrity assessments. This article presents the novel use of ultrasonic based non-destructive technique (NDT) to measure the conductor preload by observing the travel time of the longitudinal critical refracted (LCR) waves and employing the acoustoelastic method to determine the structural stresses. The measurement of the time of flight (TOF) of this wave component is evaluated from the signals measurement under a range of preload stresses induced into the specimen, and the acoustoelastic calibration curve is obtained as a result, for various section geometries and dimensions. Numerical analyses are also carried out to correlate and validate the magnitude order of the acoustoelastic constant of typical conductor steel grade (grade-B). These are in good agreement with each other and can be a very reliable tool for the on-site preload measurements during oil well integrity assessment. This measurement of conductor preload results in minimising any associated uncertainties, assumptions and the corresponding over-conservatisms carried over from the design stage, hence streamlining the repair and rehabilitation strategies to the most critical well-conductor groups in the field, thus significantly reducing the costs and resources for operators in extending life of aged wells. (C) 2017 Elsevier Ltd. All rights reserved.
机译:老化油井的生命延伸正在成为近年来经营者活动的一个更关键的部分,主要是由于油价萎缩,这使得新的探索和一些较旧领域的潜在扩展运作,具有足够的生产能力仍然存在。该导体形成井的主要结构部件之一及其随着时间的恶化,保证即时完整性评估和康复计划。根据标准指南计算导体上的施工残余装载或预载荷,并通过设计和安装阶段进行分析手段,但由于在旨在解决的高度过保守主义时,评估年龄的导体时可能不是现实的在钻井阶段期间的各种不确定性,因此需要更实用的评估这种残留载荷的方法是在进行完整性评估时。本文提出了通过观察纵向临界折射(LCR)波的行程时间来测量导体预载,并采用声弹性方法来测量导体预载,并采用声弹性方法来确定结构应力。从诱导样品中的一系列预紧应力下的信号测量评估该波部件的飞行时间(TOF)的测量,并且各个截面几何和尺寸得到偏振校准曲线。还进行了数值分析以相关和验证典型导体钢级(级-B)的声弹性常数的幅度顺序。这些彼此非常吻合,可以是油井完整性评估期间现场预加载测量的一个非常可靠的工具。该导体预载的这种测量导致从设计阶段进行的任何相关的不确定性,假设和相应的过保守主义最小化,从而将修复和康复策略简化到该领域中最关键的井导群,从而显着降低了成本运营商在延伸年龄井的寿命中的资源。 (c)2017 Elsevier Ltd.保留所有权利。

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