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Enhanced C/O Saturation Monitoring Aids Water Flood Management - Case Studies from the Gulf of Suez

机译:增强的C / O饱和度监测艾滋病水洪水管理 - 苏伊兹湾的案例研究

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As oil fields mature, progressively more effort is being devoted to diagnosing production and reservoir problems and to finding cost-effective solutions for those problems. One of the key inputs for any reservoir management scheme is the timely monitoring of behind-pipe fluid saturation profiles across the field. In the past, this was conventionally accomplished using tools and methods requiring known, nonvarying and sufficiently high formation water salinities. In the cases of water flooding with fresh water, mixed water, and/or water of unknown salinity, these methods become useless. In such cases, cased-hole saturation monitoring may only be achieved using tools and methods independent of water salinity such as the carbon-oxygen (C/O) method. Using the C/O techniques to compute water saturation offers many advantages over conventional techniques that depend on formation water salinity. These techniques relate directly to the volumes of oil and water in the formation, and the conversion of C/O ratio to oil saturation is based on a large database acquired in a wide range of formations and well bore environments. Recent enhancements to spectral processing and job execution have resulted in dramatic improvements in the effectiveness of C/O logs. These enhancements include improved elemental standards and the development of a full spectrum calibration to provide better tool-to-tool accuracy and precision in a wider range of porosities even in the presence of gas. The enhancements also include operational improvements such as combination with production logging tools and appropriate “time-stepping” of shut-in and flowing surveys. Several Gulf of Suez fields have undergone water flooding with non-native waters and have thus presented formidable challenges to traditional cased hole saturation monitoring techniques. More recently, operators in the area have started employing enhanced C/O techniques with great success. Enhanced C/O methods are now routinely used to effectively detect unswept hydrocarbons and to track fluid contact movements in water-flooded reservoirs. This paper discusses several case studies from the Gulf of Suez that clearly demonstrate the efficacy and economic benefits of the enhanced C/O methods.
机译:随着石油田地成熟,逐步努力探讨了生产和水库问题,并为这些问题寻找具有成本效益的解决方案。任何储层管理方案的一个关键输入之一是及时监测跨越场上的管道流体饱和型材。在过去,通常使用需要已知的,非且足够高的地层水盐度的工具和方法来完成。在用淡水,混合水和/或未知盐度的水的案件中,这些方法变得无用。在这种情况下,壳体孔饱和度监测只能使用与碳 - 氧(C / O)方法无关的工具和方法来实现。使用C / O技术来计算水饱和度提供了与依赖于形成水盐度的传统技术的许多优点。这些技术直接与地层中的油和水量相关,并且C / O比与油饱和的转化基于在各种地层和孔环境中获得的大型数据库。最近的频谱处理和作业执行的增强导致C / O日志的有效性急剧提高。这些增强功能包括改进的元素标准和开发全谱校准,即使在气体存在下也能为更广泛的孔隙率提供更好的工具到工具精度和精度。增强功能还包括运营改进,例如与生产记录工具的组合以及相应的“时间踩到流程调查”。几个苏伊士田田地田田经历了与非原生水域的水分,因此对传统的套管孔饱和监测技术表示了强大的挑战。最近,该地区的运营商开始采用增强的C / O技术,取得了巨大的成功。现在通常用于有效地检测未扫描的碳氢化合物并追踪水淹水储层中的流体接触运动。本文讨论了Suez海湾的几个案例研究,清楚地证明了增强的C / O方法的疗效和经济效益。

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