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Integrated shale-gas reservoir characterization: A case study incorporating multicomponent seismic data

机译:集成的页岩气储层表征:一种含有多组分地震数据的案例研究

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The objective of this case study is to predict geologic properties of a shale reservoir interval to guide production and completion planning for successful development of the reservoir. The conditioning, analysis, and blending of the converted-wave (PS) seismic data into a quantitative interpretation (QI) workflow are described in detail, illustrating the successful integration of geologic information and multiple seismic attributes. A multicomponent 3D seismic survey, several wells with dipole sonic logs, and a multicomponent (3C) 3D vertical seismic profile are available for the study. For comparisons of the incremental value of PS data, the QI workflow is completed entirely using only PP data and then modified and redone to incorporate information from the PS data. Predictions of the geologic properties for both workflows are assessed for accuracy against the existing well log and core evidence. Determining reservoir properties of the shale units of interest is important to the successful placement of horizontal wells for efficient multistage hydraulic fracturing and maximum gas production. Although conventional interpretation of conventional seismic data can only provide reservoir geometry, the quantitative analysis of prestack multicomponent data in this study reveals detailed distinctions between reservoir units and relative measures of porosity and brittleness bulk properties within each unit. Using all of the elastic properties derived from the seismic data analysis allowed for the classification of lithological units, which were, in turn, subclassified based on unit-specific reservoir properties. The upper reservoir units (Muskwa and Otter Park) were shown to have more variability in brittleness than the lower reservoir unit (Evie). Validation at a reliable well control confirmed these distinctive units and properties to be very high resolution and accurate, particularly when the PS data were incorporated into the workflow. The results of this method of analysis provided significantly more useful information for appraisal and development decisions than conventional seismic data interpretation alone.
机译:本案例研究的目的是预测页岩储层间隔的地质特性,以指导储层成功发展的生产和完成规划。详细描述了转换波(PS)地震数据的调节,分析和将转换波(PS)地震数据(QI)工作流程进行了详细描述了地质信息的成功集成和多种地震属性。该研究可用于研究多组分3D地震测量,具有偶极声记录的几个孔,以及多组分(3C)3D垂直地震型材。为了比较PS数据的增量值,QI工作流程仅完全使用PP数据来完成,然后修改并重新编号以包含PS数据的信息。评估两种工作流的地质特性的预测,以获得对现有井日志和核心证据的准确性。测定人权单位的储层性质对横向井的成功放置有效的多级液压压裂和最大气体生产非常重要。虽然传统地震数据的传统解释只能提供储层几何形状,但本研究中的PRESTACK多组分数据的定量分析揭示了每个单元内的储层单元和孔隙率和脆性堆积性质之间的详细区别。使用从地震数据分析中衍生的所有弹性特性允许岩性单元的分类,这反过来基于特定于单位的储层性质进行分类。上储层单元(Muskwa和Otter Park)被证明脆性比下部水库单元(EVIE)在脆性方面具有更多可变性。可靠良好控制的验证确认这些独特的单位和属性非常高的分辨率和准确,特别是当PS数据纳入工作流程时。这种分析方法的结果提供了比常规地震数据解释的评估和发展决策明显更有用的信息。

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