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Advanced Technology To Reduce Water Cut: Case Studies From the Pemex Southern Region

机译:减少缺水的先进技术:来自Pemex南部地区的案例研究

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This paper presents the results of a successful application of a new-generation polymeric relative permeability modifier (RPM) that enables treatments to reduce water cut without workover equipment. The new RPM can be bullheaded into open intervals without the need for isolating water zones from hydrocarbon zones. This treatment was applied to several wells in the Pemex southern region. As a result of the treatment, the productive life of the wells has been extended, with a gradual decrease in water cut. These results indicate high potential profitability values for mature fields with high water cut requiring a simple, low-cost treatment without the need for workover equipment or shut-in times. The new treatment can increase the hydrocarbon recovery percentage in sands that in all probability would be destined for abandonment otherwise.rnThis paper describes the treatment methodology, which begins with problem identification and an understanding of the origin of the water breakthrough. Next, the paper describes the new technology, which uses hydrophobically modified water-soluble polymers, and explains how applying such polymers can control water selectively. In addition, the detailed execution of the treatment is described, followed by the very positive production results of the treatment. The results of this low-investment, high-profit technology are very promising for other wells under similar conditions in which workovers with conventional technologies would be cost prohibitive.
机译:本文介绍了成功应用新一代聚合物相对渗透率改性剂(RPM)的结果,该改性剂使处理无需修井设备即可减少含水率。可以将新的RPM扩大到开放的时间间隔,而无需将水层与烃层隔离。这种处理方法已应用于Pemex南部地区的几口井。处理的结果是,井的生产寿命得以延长,含水率逐渐降低。这些结果表明,对于含水率高的成熟油田,需要简单,低成本的处理而无需修井设备或关闭时间,因此具有很高的潜在获利能力值。这种新的处理方法可以提高砂子中的烃采收率,否则很可能会将其遗弃。本文描述了处理方法,该方法从问题识别和对水突破源头的了解开始。接下来,本文介绍了使用疏水改性的水溶性聚合物的新技术,并说明了如何使用此类聚合物选择性控制水。另外,描述了该处理的详细执行,随后是该处理的非常积极的生产结果。这种低投资,高利润技术的结果对于在类似条件下的其他油井非常有前途,在这些情况下,使用常规技术进行修井将禁止成本。

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