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An Innovative Solution to Optimizing Production in Naturally Fractured Carbonate Reservoirs in Southern Mexico

机译:墨西哥南部天然骨质碳酸盐储层生产的创新解决方案

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The results of stimulation treatments in southern Mexico’s carbonate reservoirs have been significantly improved using a new fiber-assisted, self-diverting acid system. These reservoirs are thick, deep, and hot. Depths are usually greater than 15,000 feet, bottomhole temperatures reach up to 350°F, and permeabilities range from 1 to 1000 mD within the same interval. Wells are typically completed with multiple perforated intervals. In the past, high-viscosity diverting fluids have been used to improve zonal coverage during stimulation treatments. Despite repeated treatments during the life of the well, in many cases, post-treatment logs show that the treatment was not effectively diverted to lower permeability, less productive intervals. To overcome these challenges, we introduced an innovative degradable diverting acid system combining the properties of viscoelastic diverting acid (solid-free) and degradable fibers to southern Mexico. This, combined with a rigorous candidate selection process, resulted in improved zonal coverage, increased oil production, and higher ultimate reserve recovery. Maximizing oil production using this diverter system requires a detailed understanding of the petrophysical properties of the reservoir and production history. This information helps determine treatment volumes and the volume and number of diverter stages. Wells with the highest permeability contrast are often the best candidates. In many cases, producing from natural fractures depends on correctly determining the number and volume of the diverter stages. The experienced gained from treating more than 10 wells has resulted in the development of clear guidelines with respect to the treating fluid, volume, and number of diverter stages. On average, the guidelines have resulted production increases of 1,500 BOPD. By applying the treatment guidelines with an effective diverter fluid, operators can significantly increase oil and gas production in previously stimulated or new wells within naturally fractured carbonate reservoirs.
机译:使用新的纤维辅助自转移酸系统,墨西哥碳酸盐储层的刺激治疗结果得到了显着改善。这些水库厚,深,热。深度通常大于15,000英尺,井底温度高达350°F,渗透率范围为1至1000 md在相同的间隔内。孔通常以多种穿孔间隔完成。在过去,已经使用高粘度转移流体来改善刺激处理期间的区域覆盖率。尽管在井的生命期间重复治疗,在许多情况下,治疗后的日志表明,治疗没有有效地转移到较低的渗透性,较少的生产间隔。为了克服这些挑战,我们介绍了一种创新的可降解转向酸系统,将粘弹性转向酸(无固态)和可降解纤维的性质与墨西哥南部相结合。这与严谨的候选选择过程相结合,导致了改善的区域覆盖率,增加了石油产量和更高的最终储备恢复。利用该转向系统最大限度地提高石油生产需要详细了解水库和生产历史的岩石物理特性。此信息有助于确定处理卷和转向阶段的体积和数量。具有最高渗透率对比的井通常是最好的候选人。在许多情况下,从自然骨折产生的产生取决于正确确定转向阶段的数量和体积。从处理超过10个井的经验导致了关于治疗流体,体积和分解阶段的明确指南的发展。平均而言,指南导致产量增加了1,500名博各。通过将治疗指南应用于有效的分解液,操作员可以在自然裂缝碳酸盐储层中显着增加先前刺激或新井的石油和天然气生产。

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