首页> 外文会议>Society of Petroleum Engineers Annual Technical Conference >Preventing Scale Deposition Downhole Using High Frequency Electromagnetic AC Signals from Surface to Enhance Production Offshore Denmark
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Preventing Scale Deposition Downhole Using High Frequency Electromagnetic AC Signals from Surface to Enhance Production Offshore Denmark

机译:防止井下沉积井下沉积井下来自表面的高频电磁共振信号,以增强生产海上丹麦

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Mineral scale deposition is a significant impediment to efficient operation of oil and gas facilities. Deposition control strategies include brine demineralisation,chemical inhibition and mechanical inter-vention.Mitigation costs are highest at offshore locations requiring well intervention and include significant production deferment.Hydrocarbon production in the Danish sector of the North Sea has a number of specific regional challenges as reservoirs are often carbonate with high produced water calcium concentration resulting in a high potential for carbonate scaling.Secondary production techniques such as water injection flooding to maintain pressure are used and sea water is pumped directly into the reservoir introducing sulphate leading to downhole mineral scale deposition of barium sulphate,strontium sulphate etc.The offshore location of production facilities dictates that interventions are expensive and put pressure on valuable offshore bed spaces. This paper reports results of field application of a recently introduced scale control technology based on high frequency electromagnetic AC signals generated and impressed onto a well head or associated piping conduit.Field trial data is provided from a production well with a history of scaling where production pressure was held back to reduce scaling severity.Field trial data describes the impact of the technology in preventing scale in a high value well.Analysis of the results showed that physical treatment using this alternative approach effectively controlled scale deposition such that the production systems was protected and the production benefits included increased reliability of gas lift valves,cessation of any tubing acid washes and enhancing production.The economic value added and reduction in risk to personnel and emissions are described. An extended(9 month)pilot test has allowed production to be increased and no mineral scaling has been detected.The results achieved are promising.Stable and no lost production added a value to the producing asset and avoided significant revenue loss to the operator.
机译:矿物尺度沉积是石油和气体设施有效运行的重要障碍。沉积控制策略包括盐水脱矿,化学抑制和机械间植物间。在需要良好干预的海上地点,包括良好的干预的地点,包括大量产量延迟。北海的丹麦部门的氯化碳产量有许多特定的区域挑战作为水库。通常是碳酸盐高产生的水钙浓度,导致碳酸盐缩放的高潜力。使用水喷液淹没以维持压力的渗透性生产技术,并将海水直接泵入储层引入硫酸盐的储层导致钡矿沉积硫酸盐,硫酸盐锶等。生产设施的海上地点决定了干预措施昂贵并对有价值的离岸床铺施加压力。本文报告了最近引入的尺度控制技术的现场应用结果基于生成的高频电磁共振交流信号,并将其印象在井头或相关的管道管道上。菲尔德试验数据是从生产压力的缩放历史的生产中提供的。被重新阻止减少缩放严重程度。菲尔德试验数据描述了技术在预防高值中预防尺度的影响。结果表明,使用这种替代方法的物理处理有效地控制了规模沉积,使得生产系统受到保护和生产系统生产效益包括增加气体升降阀的可靠性,任何管酸洗涤和增强生产的停止。描述了人员和排放风险的经济增值和降低。延长(9个月)试验试验已允许生产增加,未检测到矿物缩放。取得的成果是有前途的。最有价值,并且没有损失的产量为生产资产增加了价值,并避免了对运营商的重大收入损失。

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