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Reducing Reservoir Uncertainty During Appraisal and Development-Novel Applications of a new Wireless Reservoir Monitoring Technology in Santos Basin Pre-Salt

机译:减少桑托斯盆地新型无线水库监测技术的评估和开发新应用中的水库不确定性

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Uncertainties in reservoir connectivity and compartmentalization risk are important considerations when thinking about any new field appraisal or development options. Having a better understanding of reservoir connectivity provides benefits in determining the appropriate drainage strategy and optimizing the field development plan. By the application of a new wireless reservoir monitoring technology, based on electromagnetic (EM) communications, it is now possible to monitor the reservoir pressure and temperature response during the long term suspension of development or appraisal wells. Accurate reservoir data can now be reliably collected in the period prior to a completion string being run, or a Xmas tree being installed on the well. Petrobras is conducting an active programme of drilling and well testing evaluation in the Pre-Salt Santos Basin area, with the objective of maximizing the collection of reservoir data that can be used to prove the reservoir models. An opportunity was identified to utilize this wireless monitoring technology in some newly drilled development wells that were to be suspended for an extended period of up to 3 years. The primary monitoring objective was to gather dynamic reservoir pressure data that could be used to identify interference effects resulting from production or injection events in the adjacent field area. Any evidence of interference will serve to prove reservoir connectivity with the adjacent well assets. A secondary monitoring objective was to record a long term pressure build-up, beyond the end of a Drill Stem Test (DST), to check for the presence of any reservoir boundaries located far from the wellbore. Case histories are presented for 2 installations of the wireless technology in the Brazilian deepwater pre-salt environment. The first case history presents the installation of a wireless gauge system that successfully transmitted high quality pressure and temperature data to a subsea receiver for a period of 873 days until the receiver’s recovery from the seabed. The results show clear evidence of inter-well interference resulting from production in both near and far located wells. With certain producing wells being located at least 12km away from the observation well, this demonstrates that there was excellent reservoir connectivity across the field.
机译:在思考任何新的实地评估或发展方案时,水库连接和分区风险的不确定性是重要的考虑因素。更好地了解水库连接在确定适当的排水策略和优化现场开发计划方面提供了效益。通过应用新的无线储层监测技术,基于电磁(EM)通信,现在可以在长期悬浮井期间监测储层压力和温度响应。现在可以在运行完成字符串之前的时间段内可靠地收集准确的储库数据,或者在井上安装了XMAS树。 Petrobras正在进行积极的钻井和井测试评估程序,其中盐斯塔斯盆地面积最大化,最大化可用于证明储层模型的储层数据的收集。在一些新钻井开发井中,确定了这种无线监测技术的机会,这些技术将暂停长达3年的时间。主要监测目标是收集动态储层压力数据,该数据可用于识别由相邻场区域中的生产或注射事件产生的干扰效果。干扰的任何证据都将用于证明与相邻的井资产的水库连通性。二级监测目标是在钻杆测试(DST)的尽头之外记录长期压力积聚,以检查是否存在远离井筒的储层边界。提出了案例历史,为巴西深水预盐环境中的无线技术的2个安装。第一种案例历史呈现了无线规格系统的安装,该系统成功地将高质量的压力和温度数据传送到海底接收器873天,直到接收器从海底恢复。结果表明,在附近和远位于井中产生的井间干扰的清晰证据。对于距离观察井至少12km的某些产生井,这表明整个领域存在优异的储层连通性。

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