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Successful Appraisal of Maximum Reservoir Contact Well in an Undeveloped Reservoir Through Well Construction and Integrated Fit for Purpose Engineering Technology

机译:通过良好的结构和综合适用于目的工程和技术,成功评估最大储层良好的储层良好良好的储层。

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Undeveloped reservoirs poses many uncertainties in terms of reservoir structural control and inherent properties and as a result integrated fit for purpose engineering and technology plays a vital role to drill, appraise and complete a well successfully. While Maximum Reservoir Contact (MRC) wells show promise in increased deliverability, sustainability and cumulative recovery, the risk of high cost, reduced well life and sustainability issues can become real if the well is not planned, executed and appraised properly. This paper focuses on the integrated multi-disciplinary approach between Reservoir Engineering, Petroleum Engineering, Drilling and Geoscience functions to achieve MRC of 8,500 ft. in two sublayers of 3 ft. each while mapping and avoiding any potential risk for water zones. Data acquisition pertaining to reservoir characterization, fracture and fault identification was planned to enhance this undeveloped reservoir understanding and to optimize lower completion design. 3D real-time multiwell reservoir modelling and updating capabilities with appropriate LWD measurements for Proactive Geosteering and Formation Evaluation was planned. Based on forward response model from offset well data along with drilling engineering and data acquisition requirements, an LWD suite consisting of RSS, Gamma Ray Image, High Resolution Resistivity Image (Fracture and Fault identification), NMR (both Total and Partial Porosities, and T2 Distribution) along with a Deep Azimuthal Resistivity measurement for early detection and avoidance of conductive/water zones was utilized. Achieved a field record of the longest drain drilled with 8,500 ft. of MRC. The fit for purpose real time LWD measurements enabled successful placement of the lower completion and blanking the risk zones for pro-longed sustainable production. Identification of fracture zones in real time helped in optimizing the completion plan while drilling. Based on this well's results, it is established that replicating the same practice could positively affect the overall Field Development potential. The same technique is planned for the future development of undeveloped reservoirs in this field.
机译:未开发的水库在储层结构控制和固有特性方面造成许多不确定性,因此由于目的,工程和技术综合适合于钻探,评价和完善成功良好的作用。虽然最大水库联系人(MRC)井显示在增加的可交付能力,可持续性和累积恢复方面,较高成本,较低的井生命和可持续性问题的风险可能会变得真实,如果未计划,执行和评估。本文重点介绍了水库工程,石油工程,钻井和地球科学功能之间的综合多学科方法,以实现8,500英尺的MRC。在3英尺的两个子层中。每次映射并避免水域的任何潜在风险。计划有关储层表征,裂缝和故障识别的数据采集,以增强这种未开发的水库理解,并优化较低的完成设计。 3D实时Multiwell储层建模和更新具有适当的LWD测量的主动性地升总管和形成评估的能力。基于偏移井数据的前向响应模型以及钻探工程和数据采集要求,LWD套件包括RSS,伽马射线图像,高分辨率电阻率图像(骨折和故障识别),NMR(总和部分孔隙,以及T2分配)利用用于早期检测和避免导电/水区的深度方位角电阻率测量。达到了8,500英尺钻的最长漏极的现场记录。MRC。适用于目的实时LWD测量使得能够成功地放置较低的完成和消隐风险区,以进行高档可持续生产。实时识别骨折区域有助于在钻井时优化完成计划。基于这井的结果,建立了复制相同的做法可以积极影响整体场地发展潜力。该领域未来未开发水库的未来发展计划采用相同的技术。

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