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Advanced logging and analytical methods unlock producibility potential in fresh formation water — A case study from offshore West Africa

机译:先进的测井和分析方法释放了新鲜地层水中的生产潜力—以西非近海为例

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The sedimentary basins of West Africa encompass a vast diversity of geologic depositional settings, in and from which hydrocarbons are being explored and produced. The siliciclastic rock units can be structurally heterogeneous, the reservoirs distribution and quality is highly variable, and formation waters have changing salinity values. The fresh to very fresh formation water diminishes the contrast to hydrocarbon complicating any salinity-based measurement technique, such as resistivity. As a result, the reservoir potential might be under- or overestimated by conventional methods; hence, an intelligent petrophysical evaluation and a fit-to-purpose solution become essential to enable the most appropriate development and production strategy. As part of an extended portfolio of wireline logging technology, dielectric dispersion measurement is a critical contribution to the logging programs across the region. The advanced measurement provides dielectric permittivity and conductivity at multiple depths of investigation through the use of multiple frequencies, receiver spacing, and polarizations that are adequately fit into an innovative mandrel design. Robust inversion of all measurements enables solving for salinity, invasion profile, water fraction, shallow zone resistivity, and saturation even when it is hard to distinguish oil from freshwater. We have developed a remarkable example of intelligent logging assessment in highly complex reservoir units where the novel dielectric dispersion measurement is combined with highresolution magnetic resonance for improved formation evaluation and reservoir management. An integrated data analysis workflow enables fast determination of pay zones and movable fluids independently from and to support saturation equation and input parameters setting. Comparison of the results from well testing confirms the improvement in reservoir description with additional advanced logging measurements (at an early stage of reservoir development) into reservoir models. The information provided is vital to guide perforation and completion designs.
机译:西非的沉积盆地涵盖了多种多样的地质沉积环境,正在其中勘探和生产碳氢化合物。硅质碎屑岩单元可能在结构上是非均质的,储层的分布和质量变化很大,地层水的盐度值也不断变化。淡水到非常新鲜的地层水会减少与烃类的对比,这会使基于盐度的任何测量技术(例如电阻率)复杂化。结果,常规方法可能会低估或高估储层的潜力。因此,智能岩石物理评估和适合目标的解决方案对于实现最合适的开发和生产策略至关重要。作为有线测井技术扩展产品组合的一部分,介电弥散测量是对该地区测井计划的关键贡献。先进的测量通过使用多种频率,接收器间距和极化,可在多种研究深度提供介电常数和电导率,这些频率已完全适合于创新型心轴设计。即使很难将油与淡水区分开,所有测量值的可靠反演也能解决盐度,侵入剖面,水份,浅层电阻率和饱和度的问题。我们在高度复杂的储层单元中开发了智能测井评估的杰出示例,其中新型介电弥散测量与高分辨率磁共振相结合,以改善地层评估和储层管理。集成的数据分析工作流程能够独立于并支持饱和度方程和输入参数设置而快速确定产层和活动流体。试井结果的比较证实了在储层模型中进行额外的高级测井测量(在储层开发的早期阶段)可以改善储层描述。提供的信息对于指导射孔和完井设计至关重要。

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