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Characterizing the Flow Units in Carbonates With Production Logging and Borehole Images: Developing a Workflow in Western Offshore India

机译:用生产伐木和钻孔的碳酸盐中的流动装置表征:在印度近海的碳水化合物中开发工作流程

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The first ever compartmentalized flow profiling job in a horizontal developmental well in India was a success as a result of seamless completion design, pre-job, on-job and post-job planning and job coordination. The completion strategy of the well was the core contributor for the success of the well. The integration of borehole images with conventional LWD petrophysical logs helped in identification of the key facies as different flow units, due to their different textural and petrophysical behavior. Based on the petrophysical and geological characteristics, placement of swell packers, slotted liners and blinds were designed to complete the well. The secondary porosity and connectedness co-efficient derived from the borehole images provided major control on segmenting the borehole. The different facies identified in the pre job planning corresponded nicely to the flow units identified on production logs. It helped in identifying the zones that contribute to the water cut most and need to be avoided while completing the well. Carbonate formations from this Western Offshore India field pose various development challenges due to the inherent uncertainties with their petrophysical and geological characterization. In order to optimize the production from the development wells, a proper integration of existing technologies is imperative. High end production logging techniques for horizontal wells were made use of to determine water and gas breakout (if any) and to determine the relative contribution of each compartment. The conventional production logging sensors like spinner, temperature and pressure were combined with the advance holdup sensors and beyond the pipe vision of nuclear tool to produce a consolidated and accurate image of the flow profile. A diagnosis was made based upon the results derived from integrated analysis and a remedial plan was suggested which helped to increase production. This paper describes the entire workflow involved in planning the completion to create compartment and carrying out a flow profiling job in a horizontal well using advance production logging methods with borehole imaging. Being the first of its kind in India, this study provides a methodology for the optimum exploitation of the horizontal wells in development fields.
机译:由于无缝的完成设计,预先工作,任职和工作后计划和工作协调,在印度的水平发展井中的第一个在印度井中的第一个流动性剖面工作是成功的。井的完工策略是井中成功的核心贡献者。由于其不同的纹理和岩石物理行为,具有传统的LWD岩石物理原木的钻孔图像与常规LWD岩石物理原木的整合有助于识别钥匙面。基于岩石物理和地质特征,设计了膨胀套装,开槽衬里和百叶窗的放置才能完成井。源自钻孔图像的二次孔隙率和关联性共同有效地在分割钻孔上提供了主要的控制。在预职位规划中识别的不同相对于在生产日志上识别的流量单位对应。它有助于识别有助于水的水的区域,并且在完成井的同时需要避免。由于具有其岩石物理和地质特征的固有的不确定性,来自西海海上印度的碳酸盐块构成了各种发展挑战。为了优化发展井的生产,现有技术的适当整合是必要的。水平井的高端生产测井技术是使用水和气体突破(如果有的话)并确定每个隔室的相对贡献。传统的生产测井传感器如旋转器,温度和压力相结合,并超出了核工具的管道视觉,以产生综合和准确的流动曲线图像。基于综合分析的结果进行了诊断,并提出了补救计划,有助于增加产量。本文介绍了在规划完成时涉及的整个工作流程,以创建舱室,并使用具有钻孔成像的先进生产测井方法在水平井中进行流程分析工作。该研究提供了第一个在印度的善良,为发展领域的水平井的最佳开发提供了一种方法。

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