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Scale Management in Mature Gas Field: Case Study of Peciko

机译:成熟天然气场中的规模管理:Peciko的案例研究

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Peciko is one of the giant gas fields located in the Mahakam area, Indonesia, operated by Total E&P Indonesie. Since start up in December 1999, until May 2012, the average wellhead pressure and temperature of its wells have decreased from 150 barg to 20 barg and from 95 °C to 60 °C, respectively, while the average water/gas ratio (WGR) has increased from approximately 2.5 to 20.5 bbl/MMscf. These dramatic shifts of production parameter and borehole environment are believed to be the main factor of the increasing rate of scale deposition in significant number of its wells in the last few years. The nature of the scale encountered is mainly calcium carbonate and iron carbonate. Reviews have been carried to better understand the phenomena of scale formation in the field and to formulate the optimum solutions in overcoming it. Guidelines have been established to facilitate early detection or prediction of scaling, which includes routine water analysis, periodic check of tubing clearance, and running multifinger caliper in the well. Numerous attempts of removing the scale have been tried, with mechanical and/or chemical techniques, from light intervention using slick line unit, until semi-heavy intervention with coiled tubing unit (CTU). Several successful results have been observed, to some extent. Calcium carbonate scale showed to be relatively easy to remove, but the presence of iron carbonate imposes more challenge and complication. The milling operation, in particular, has been improved to minimize the negative effect of liquid circulation in sensitive wells, i.e. evolving from CTU milling using brine, to CTU milling using nitrified base oil, to electric line milling without liquid circulation. The guidelines, lessons learned, and the foreseen solutions are considered as the key elements of scale management in the field, and will be described further in the paper.
机译:Peciko是位于印度尼西亚Mahakam地区的巨型天然气领域之一,由E&P Indonesie Total E&P.自1999年12月开始以来,直到2012年5月,其井的平均井口压力和温度分别从150巴格降低到20巴,分别为95°C至60°C,而平均水/气体比(WGR)从大约2.5到20.5 bbl / mmff增加。这些巨大的生产参数和钻孔环境的戏剧性偏移被认为是在过去几年中大量井中沉积速度增加的主要因素。遇到的规模的性质主要是碳酸钙和碳酸铁。已经携带的评论更好地了解该领域的规模形成现象,并制定了克服它的最佳解决方案。已经建立了指导原则,以促进缩放的早期检测或预测,包括常规水分分析,定期检查管道间隙,并在井中运行多簇卡钳。已经尝试了从使用光滑线单元的光干预的机械和/或化学技术尝试了多次去除刻度的尝试,直到具有盘绕管单元(CTU)的半重介入。在某种程度上已经观察到了几种成功的结果。碳酸钙量表显示出相对容易去除,但碳酸铁的存在征收更多的攻击和复杂性。特别地,铣削操作已经提高以最小化敏感孔中液体循环的负效应,即使用盐水从CTU铣削进化到使用硝化基础油的CTU铣削,在没有液体循环的情况下电线研磨。准则,经验教训以及预见的解决方案被视为现场规模管理的关键要素,并将在论文中进一步描述。

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