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An offshore reservoir monitoring system based on fibre-optic distributed sensing of seabed strains

机译:基于海底菌株光纤分布式传感的海上储层监测系统

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摘要

One of the problems affecting mature hydrocarbon fields, e.g., Ekofisk, Tyra, and Dan in the North Sea, is seabed subsidence due to reservoir depletion. Fluid injection is a widely used method to boost production and/or maintain reservoir pressure in order to mitigate compaction and subsidence. Both reservoir depletion and fluid injection operations might induce seabed deformations. The deformation pattern potentially holds useful information about production efficiency and reservoir management, which could be captured by careful monitoring of seabed strains. Therefore, the idea suggested herein was performing near full-field and continuous monitoring of seabed deformations by means of distributed fibre-optic strain sensing. The objective of the study was to theoretically calculate and assess whether current technologies (i.e., off-the-shelf optical interrogators) are accurate and sensitive enough to detect production-induced seabed strains originating at a 2 km-deep reservoir. The analysis indicates that depletion-induced subsidence is potentially measurable with seabed distributed fibre-optic strain sensing. However, the operation of an injector-producer array induces seabed strains that are too small to be detected with current capabilities.
机译:影响北海的成熟烃场,例如Ekofisk,Tyra和Dan的问题之一是由于水库耗尽而导致的海底沉降。流体注入是一种广泛使用的方法,可以提高生产和/或保持储层压力,以减轻压实和沉降。储层耗尽和流体注射操作都可能会诱导海底变形。变形模式可能占据了有关生产效率和储层管理的有用信息,这可以通过仔细监测海底菌株来捕获。因此,本文建议的思想正在通过分布式光纤应变感测进行近全场和连续监测海底变形。该研究的目的是理论上计算和评估当前技术(即,现成的光学询问者)是否准确且足够敏感,以检测源自2公里深水库的生产诱导的海底菌株。该分析表明,随着海底分布式光纤应变感测,耗尽引起的沉降潜在地可测量。然而,喷射器 - 生产者阵列的操作诱导太小而无法用电流能力检测的海底菌株。

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