首页> 外文会议>Society of Petroleum Engineers Annual Technical Conference and Exhibition >Development and Field Use of a Novel Solvent-Water Emulsion for the Removal of Asphaltene Deposits in Fractured Carbonate Formations
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Development and Field Use of a Novel Solvent-Water Emulsion for the Removal of Asphaltene Deposits in Fractured Carbonate Formations

机译:新型溶剂水乳液的开发和现场使用用于在裂缝碳酸盐形成中除去沥青质沉积物

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The formation of asphaltene scale inside the tubing or in the reservoir is a common problem associated with crude oils in many parts of Italy and common to the industry as whole. In Italy regular treatments using coiled tubing or washing by bullheading are performed to re-establish production. While asphaltene inhibitors can be injected into the tubing string, asphaltenes can still create problems below the injection point and plug the perforations, formation pores, and/or natural fracture network systems. There is a wide range of hydrocarbon-based solvents that have been used in the industry to remove asphaltenes. The more effective solvents have a low flash-point temperature, making them expensive and hazardous. In addition these hydrocarbon-based solvents leave the formation in an oil-wet state after asphaltene removal instead of re-establishing the water-wet condition that acts as barrier to slow down the deposition of the asphaltene on the formation. This effect accelerates the re-disposition of the asphaltene in the formation and increases the speed of the production decline, increasing the frequency of remedial treatments. This paper describes the laboratory development and field application of a water/aromatic solvent emulsion system that has been successfully used to clean/dissolve asphaltene and leave the carbonate fractured formation in a water-wet state to delay the production decline. Other advantages when using this type of emulsion are cost reduction and improved effectiveness in removing asphaltene deposits, when compared to alternative solvents that have been employed. This is of particular significance to these wells where large volumes of a washing phase have to be pumped downhole. Hazards have also been reduced by using relatively high flash-point aromatics. Continuous mixing of the emulsion when pumping reduces waste and improves the logistics involved in pumpingthe large volumes needed to treat long, openhole sections and/or to treat the fractures deeper in the near-wellbore region. Two successful field applications in south Italy will be discussed in detail, describing the placement technique employed and the results achieved with this new system. These treatments will be compared to previous treatments using a hydrocarbon-based solvent. In the first well, where previous treatments had failed to make significant improvements, following the application of this emulsion the production was practically fully restored and the production decline was significantly slower than previous treatments. The second well treated was a long, horizontal wellbore; again the emulsion and technique proved successful in returning the production to previous levels and sustaining the new level for an extended period of time.
机译:沥青规模的管内或在水库的形成是与原油在意大利的许多部位,共用相关的行业作为一个整体的通病。在意大利使用连续油管或洗涤后挤入常规治疗方法进行重新建立生产。虽然沥青质抑制剂可以被注入到油管柱,沥青质仍然可以创建在注入点下方的问题和堵塞穿孔,形成孔,和/或天然裂缝网络系统。存在宽范围已在工业中用于去除的沥青质的烃系溶剂。更有效的溶剂具有低的闪点温度,使它们昂贵和有害。另外,这些烃类溶剂的沥青质离开去除,而不是重新建立水湿条件充当屏障上形成沥青质的沉积减缓后在油湿状态的形成。这种效果在加速形成沥青质的重新配置和增加的产量下降的速度,增加的补救处理的频率。本文介绍一种水/芳族溶剂乳化体系已被成功地用于清洁/溶解的沥青质和离开碳酸盐压裂地层的水润湿的状态耽误生产下降的实验室开发和现场应用。使用这种类型的乳液时其他优点是降低成本,在相比已采用替代溶剂时除去沥青质沉积物,改进的有效性。这是对这些井,其中大容量的洗涤阶段必须井下泵送特别重要的意义。危险也减少了使用相对高闪点芳烃。当抽减少浪费和提高参与需要pumpingthe大批量物流治疗长裸眼段和/或在近井区域的深治疗骨折的乳液连续混合。在意大利南部两个领域的成功应用将详细讨论,说明所采用的配置技术,结果与这个新的系统来实现。这些处理将相比于使用烃系溶剂以前的治疗。在第一口井,在以前的治疗未能作出显著的改善,这种乳液的产量几乎完全恢复的应用和产量下降是显著慢于之前的治疗之后。井处理的第二个是一个长期的,水平井眼;再次乳液和技术证明是成功的返回生产到以前的水平和维持用于在延长的时间周期的新的水平。

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