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Improved Stacked Permian Development by Integrating DNA Diagnostics with Traditional Reservoir Analysis

机译:通过将DNA诊断与传统水库分析集成,改善了堆叠的二叠辑开发

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Permian operators have dramatically increased the number of multi-stage fractured horizontal wells over the past 5 years and face challenges associated with maximizing production of existing wells while developing new acreage and benches,all the while meeting capital return requirements.Over that time,DNA diagnostics have been applied successfully to more than 1000 wells throughout the Permian Basin to help operators reduce uncertainties ranging from drained rock volume,well-well communication,and sources of water production.When subsurface conditions change,microbes change,and the DNA from microbes can be used to profile total fluid flow(water + oil phases)from benches and between wells.It therefore serves as a powerful tool to provide a range of answers,using advanced analytics and integration with various data sets.In this study,we will provide the background of DNA diagnostics and related analytics,along with the latest insights into viable operating environments.We also highlight recent Permian basin projects that have used DNA in conjunction with operator data to reduce uncertainty about subsurface conditions.We will show Total Fluid Logs,which are based on comparing DNA signatures from produced fluids with a DNA stratigraphy log.Total Fluid Logs are utilized to 1)constrain interpreted fracture heights,and 2)work in combination with pressure and production data for Rate Transient Analysis(RTA)for significantly improved estimation of the half-length.The case histories will illustrate the differences between production rates and confirmed fracture height and half-length,and a discussion of microseismic is included.We show how produced fluid collection during pad completions can elucidate well-well communication and demonstrate the impact of completion size and completion order on effective drainage heights.DNA changes in produced fluids can be compared to production data to reveal the timing and impact of frac hits between wells during zipper completions.Finally,we provide a suggested workflow for analyzing water contributions out of target in the diagnosis of problem wells.Petrophysical logs can be compared to drainage height assessments to help reveal from which depths water may be producing and can be integrated with production data for a more complete subsurface understanding.DNA diagnostics represent a complementary,cost effective,minimum environmental footprint and low risk tool for operators to easily integrate into existing production and engineering workflows for monitoring well health and subsurface conditions across time.
机译:在过去的5年里,二叠纪运营商大大增加了多级破碎水平井的数量,并面临着最大限度地利用现有井生产的挑战,同时开发新的种植面积和长椅,同时满足资本返回要求。那时​​,DNA诊断已成功应用于1000多家井整个跨国盆地,以帮助运营商减少不确定性,从排出的岩石容量,井通信和水资源的来源降低不确定性。当地下条件发生变化时,微生物变化,微生物的DNA可以是用于从长凳和井之间的总体流体流量(水+油阶段)。因此,它用作提供一系列答案的强大工具,使用高级分析和与各种数据集的集成。在这项研究中,我们将提供DNA诊断和相关分析的背景,以及最新的见解进入可行的操作环境。我们也突出了最近二手盆地项目与操作员数据一起使用DNA,以减少对地下条件的不确定性。我们将显示总流体日志,基于与DNA地层原木的生产流体的DNA签名与DNA地层测井进行比较。 )约束解释的裂缝高度和2)与速率瞬态分析(RTA)的压力和生产数据相结合,以显着改善半身估计。案例历史将说明生产率之间的差异和确认的骨折高度和一半 - 长度和对微震的讨论。我们展示了垫完成期间产生的流体收集如何阐明井井良好的通信,并证明完成尺寸和完成顺序对有效排水高度的影响。可以比较产生的流体的改变。生产数据,揭示拉链完成期间Frac击中Frac命中的时序和影响。最后,我们提供了一个建议的工作流程,用于分析诊断井中的目标中的水资源。可以与排水高度评估进行比较,以帮助揭示水可能产生的深度,并且可以与生产数据相结合,以便更完整地与生产数据集成。地下理解.DNA诊断代表互补,成本效益,最低环境足迹和低风险工具,用于操作员,以便在现有的生产和工程工作流程中轻松集成,以监测跨时间的健康和地下条件。

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