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Field Experience To Assess Efficiency of Scale-Dissolver Treatment in a Subsea Deepwater Well

机译:现场经验,以评估海底深水中规模 - 灾难治疗效率的经验

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The objective of this paper is to present how Petrobras is successfully managing production losses due to mineral scale formation in subsea production wells from its biggest offshore field. Marlim Field, discovered in 1985 with a STOIIP estimated at 1,012 million STD m3 (6,369 million STB) and a field area of 146 km2 is located in water depths ranging from 600 m to 1100 m.Current Marlim Field production, around 446,754 bpd is supported by injecting 761,971 bpd of sea water. The water production is 217,150 bpd (water cut = 32%) and GOR is 82 STDm3/STDm3. A total of 117 wells are on operation, with 73 producers and 44 water injectors. The field was developed using subsea completion through the vertical, deviated and horizontal wells, equipped with cased hole and open hole gravel packed screens. Scale formation has occurred as a consequence of the incompatibility between the barium and strontium present in formation water and the high amount of sulfate in the injected seawater. To avoid production losses a plan of water management was implemented, including frequent produced water chemical analyses to investigate the convenience for applying a chemical bullhead treatment to remove scale in the production wells (tubing, screen, gravel pack and near well bore)2,3,4. This paper presents results from dissolver treatments performed in the field and also from a special investigation using a rig in a horizontal well. Valuable information was obtained in this intervention, clearing up the scaling occurrence phenomena in this scenario, allowing therefore an improvement on productivity recovery of the wells.
机译:本文的目的是展示Petrobras如何如何成功地管理由于其最大的海上地区海底生产井中的矿度尺度形成。 1985年发现的Marlim领域,STOIIP估计为1,012亿Std M3(6,369百万STB),一个领域面积为146平方公里,位于水深从600米到1100米米。玛丽斯田地生产,支持约446,754个BPD通过注入761,971个海水的BPD。水产量为217,1550bpd(水切= 32%),GOR是82 stdm3 / stdm3。共有117个井进行运行,拥有73个生产商和44个水注射器。该领域是使用垂直,偏离和水平井的海底完成开发的,配备套管孔和开孔砾石填充屏幕。由于在地层水中存在的钡和锶之间的不相容性和注射海水中的硫酸盐之间的不相容而发生比例形成。为避免生产损失实施了水管理计划,包括频繁生产的水化学分析,以研究应用化学斗牛头处理的便利性,以消除生产井中的规模(管道,筛网,砾石包装和孔近孔井附近)2,3 ,4。本文提出了在现场进行的溶解者处理以及使用水平井中的钻机的特殊调查产生的结果。在本干预中获得了有价值的信息,清除了这种情况下的缩放发生现象,因此因此提高了井的生产率恢复。

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