首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Integrated Multiwell Approach for Heterogeneity Mapping and Production Optimization: A Case Study from Ratawi Formation of South Fuwaris Field, Partitioned Zone between Kuwait and Saudi Arabia
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Integrated Multiwell Approach for Heterogeneity Mapping and Production Optimization: A Case Study from Ratawi Formation of South Fuwaris Field, Partitioned Zone between Kuwait and Saudi Arabia

机译:集成的多相测绘和生产优化方法 - 以南富夫里田,科威特与沙特阿拉伯分区区的实例研究

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The Ratawi Formation is one of the well-known hydrocarbon bearing reservoir in many parts of the Middle East. South Fuwaris Field in Partitioned Zone between Kuwait and Saudi Arabia is one of the examples where Ratawi is the main pay. This reservoir has shown immense potential in-terms of production from different parts of this field. However, sharp water cut increase in some of the wells has challenged the existing understanding of heterogeneity distribution in the field. An integrated approach was applied to characterize the secondary porosity using the high resolution image logs, core data and open-hole logs. A workflow was developed to map the heterogeneity in the field and calibrate it with the available production data. The Ratawi Formation was deposited in a ramp, platform setting. It is broadly divided into an upper Ratawi Shale Member and a lower Ratawi Limestone & Ratawi Oolite Member. Major discoveries were made in the lower part of the Limestone Member and Ratawi Oolite at nearby Wafra Field in 1953. Since then, major efforts have been given to understand and map the complex porosity and permeability in the field in order to sustain the production. Though at places, presence of open fracture has been reported from the image logs, however multi-well study reveals no major impact of fractures on production. An innovative approach was implemented to extract the secondary or macro porosity formed due to leaching, using high resolution image data. Initially total porosity was estimated using high resolution borehole image log and subsequently a cut off was used to segregate the secondary porosity. The permeability was then derived from macro porosity using a complex transform. Core derived total porosity and permeability shows excellent match with the image log derived results. A geostatistical approach was applied through the static model building process to generate property maps using secondary porosity, effective porosity and derived permeability logs. A Clear degradation of reservoir property has been observed towards the NNW and SSE part of the field as it lies on the flank of the gentle anticlinal structure. Available production data validates the production rate is controlled by secondary porosity in Ratawi Oolite Formation. New wells drilled based on the property maps shows promising production results from Ratawi Oolite Formation. Single porosity geo modeling using the conventional open-hole logs has always been the first approach adopted by the industry. However, in mature carbonate reservoirs, well wise production always brings surprises. A novel approach was adopted to quantify the secondary porosity from the borehole image log which was further calibrated with the core data. Permeability was also calculated considering the secondary porosity as one of the key controller. Production data shows excellent match with the secondary porosity and permeability derived 2D maps; which has bolstered the confidence of releasing new well locations with better productivity.
机译:Ratawi形成是中东许多部分的公知的烃轴承储层之一。科威特和沙特阿拉伯之间分区区的南富瓦里斯领域是Ratawi是主要工资的例子之一。该水库显示出从该领域的不同部分的潜在的生产潜在的潜在。然而,一些井中的夏普率增加挑战了对该领域的异质性分布的现有理解。应用综合方法来使用高分辨率图像日志,核心数据和开孔日志来表征二次孔隙度。开发了工作流以映射现场的异质性并使用可用的生产数据进行校准。在斜坡,平台设置中沉积了Ratawi形成。它被广泛分为塔拉瓦页岩构件和下几个ratawi石灰石和ratawi鲕粒构件。在1953年,在附近的Wafra领域,石灰石成员和Ratawi Oerite的下半部分,在附近的Wafra领域进行了重大发现。从那时起,已经努力了解并映射该领域的复杂孔隙度和渗透率以维持生产。虽然在地方,从图像日志报道了开口骨折的存在,但多孔研究表明骨折对生产没有重大影响。实施了一种创新的方法,以利用高分辨率图像数据提取由于浸出而形成的次级或宏观孔隙率。最初使用高分辨率钻孔图像对估计总孔隙率,随后使用切断来分离二次孔隙率。然后使用复合变换从宏观孔隙率衍生渗透性。核心衍生的总孔隙度和渗透性显示出与图像日志导出的结果匹配。通过静态模型构建过程应用地质统计方法,以使用二级孔隙度,有效孔隙度和衍生渗透性日志生成属性图。由于它位于温柔的抗冲击性结构的侧面,已经观察到储层性能清晰的储层性能降解。可用的生产数据验证生产速率由二级孔隙率的级孔隙形成控制。基于房地产图钻探的新井显示出具有Ratawi Oerite地层的有希望的生产结果。使用传统的开孔日志的单孔隙度Geo建模一直是行业采用的第一种方法。然而,在成熟的碳酸盐储层中,明智的生产总是带来惊喜。采用一种新的方法来量化钻孔图像原木的次级孔隙率,其通过核心数据进一步校准。考虑到次级孔隙率作为关键控制器之一,还计算渗透率。生产数据显示出与二级孔隙度和渗透率衍生的2D地图相匹配;这使得释放新井位置的充分利用更好的生产率。

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