首页> 外文会议>SPE/AAPG/SEG Unconventional Resources Technology Conference >From Reservoir Characterization to Reservoir Monitoring:An Integrated Workflow to Optimize Field Development Using Geochemical Fingerprinting Technology
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From Reservoir Characterization to Reservoir Monitoring:An Integrated Workflow to Optimize Field Development Using Geochemical Fingerprinting Technology

机译:从水库表征到水库监控:使用地球化学指纹技术优化现场开发的集成工作流程

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Traditional geochemical techniques such as pyrolysis and Soxhlet extraction have been used for decades to guide conventional exploration.However,geochemical data obtained in the traditional way falls short of the demands of unconventional reservoir development.We have recently developed innovative analytical and data processing technology that allows geochemical information in the produced oil and rock samples to be captured at a much higher resolution(up to an order of magnitude)and fidelity.These unprecedented geochemical data reveal 1)static reservoir characteristics such as reservoir quality,oil saturation,and 2)dynamic reservoir performance characteristics such as frac growth,drainage height,and inter-well communication.These reservoir characteristics can have impacts throughout the lifecycle of unconventional reservoir development from well stacking & spacing,completion design,reservoir management,and EOR/IOR decisions.Based on high-resolution/hi-fidelity geochemical fingerprint data,we have developed an integrated workflow to provide new reservoir characterization and production monitoring information that lead directly to enhanced development opportunities for unconventional reservoirs.By data mining the fingerprint data from the rock baseline,a group of Reservoir Characterization Indices(RCI)were developed,including reservoir quality index(RQI)and oil-in-place index(OIPI).Different from other rock-based core analysis,the RCI provided an independent dataset directly from the oil residing in the rock samples.They correlate well with petrophysical data and compliment landing decisions for lateral wells.Produced oil samples were collected from legacy and infill wells.Fingerprints based on over 2000 compounds,resolved from each produced oil sample,were used to reveal well communication through time,as well as quantitative vertical drainage variation against the vertical profile previously established using the core/cutting samples.Integrating the dynamic reservoir monitoring data with the static RCI data,geochemical fingerprinting technology helps operators identify key factors controlling unconventional well performance,such as well spacing,and significantly improves the operator's ability to predict performance of future development strategies.Key conclusions from the study include:1)RCI generated in the workflow conformed well with independent petrophysical analysis;2)Indications of similar zonal contribution in wells that were landing in different intervals;3)Drainage geometries in all four landing zones appear to have distinct differences;4)Distinct overlapped drainage geometries are also evident;5)Parent wells experience changes in drainage geometry profile post-stimulation of offset child wells,then returned to their established geometry in a relatively short period of time.
机译:传统的地球化学技术,如热解和索氏提取,已经使用了几十年来指导传统探索。然而,以传统方式获得的地球化学数据缺乏对非传统水库开发的需求。我们最近开发了允许的创新分析和数据处理技术生产的石油和岩石样品中的地球化学信息以更高的分辨率(最高级)和保真度捕获。这些前所未有的地球化学数据显示1)静态储层特性,如储层质量,油饱和度和2)动态储层性能特征,如FRAC生长,排水高度和井间沟通。这些储层特性可能在整个堆积和间隔,完成设计,水库管理和EOR / IOR决策中的整个生命周期中产生影响。基于高分辨率/高保真地球化学指纹我们制定了一个集成的工作流程,提供了新的储层特征和生产监测信息,这些信息直接导致加强非传统水库的发展机会.BY数据挖掘来自岩石基线的指纹数据,开发了一组储层表征指数(RCI) ,包括储层质量指数(RQI)和地理指数(oipi)。从其他基于岩石的核心分析中有不同的,RCI直接从岩石样品中的石油提供独立的数据集。它们与岩石物理数据相密良好并赞美侧面井的着陆决策。从遗留和灌注井中收集了石油样品。基于2000多个化合物的植物夹,通过各种生产的油样品分辨,用于通过时间揭示良好的通信,以及定量的垂直排水变化以前使用核心/切割样品建立的垂直轮廓。融化动态储层IR监控数据与静态RCI数据,地球化学指纹技术有助于运营商确定控制非常规良好性能的关键因素,如间隔,并显着提高了操作员预测未来发展战略性能的能力。研究包括:1)工作流程中产生的RCI符合独立的岩石物理学分析; 2)在不同间隔降落的井中的相似区贡献的迹象; 3)所有四个着陆区的排水几何形状似乎具有明显的差异; 4)不同的重叠排水几何形状也很明显; 5)父阱在射击儿童井的刺激后排水几何形状的变化,然后在相对较短的时间内返回其建立的几何形状。

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