首页> 外文会议>SPWLA annual logging symposium >INTEGRATION OF WELL LOGS AND RESERVOIR GEOMODELS FOR FORMATION EVALUATION IN HIGH-ANGLE AND HORIZONTAL WELLS
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INTEGRATION OF WELL LOGS AND RESERVOIR GEOMODELS FOR FORMATION EVALUATION IN HIGH-ANGLE AND HORIZONTAL WELLS

机译:测井和储层几何模型的集成,用于高角度和水平井的评价

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We present a high-performance computing (HPC) environment for high-angle (HA) and horizontal (HZ) wellevaluation integrated with reservoir geological models. The new environment allows access to advanced 3Delectromagnetic (EM) modeling algorithms and workflows for the interpretation of resistivity measurements in thesewells and in complex 3D scenarios, going beyond the standard layered-media models used for conventionalinterpretation in vertical and deviated wells. This approach is especially important for the new generation of deepdirectional resistivity tools, providing sensitivities to structure on the scale of the reservoir.The 3D well log modeling is embedded as a plug-in geological modeling package. This workflow implementationenables modeling of resistivity tool responses based on the underlying reservoir geomodels by linking these tosimulators parallelized to run on PC clusters and grid. The information contained in well logs is then used to finetunethe 3D reservoir models. The results of log modeling are propagated as a change to the pillar grid model, whichis subsequently accommodated in an automated manner in the geomodeling package.A fully functional research prototype was recently deployed in a giant carbonate field study for interpretation oflarge number of horizontal wells of varying lengths logged with several wireline and LWD tools. The reservoirmodel was built using seismic and vertical well data and refined using modeling-based interpretation of hundreds ofhorizontal well logs. We present the workflow used in the process, from extraction of the reservoir model near thewellbore, to interactive model editing such as structural updates or property adjustment, to the final stage ofpropagating changes made in a 2D "curtain" cross-section of the geomodel pillar grid back to the 3D reservoirmodel. Efficiency gains from utilizing this new modeling environment are tremendous, which makes it the modelingpackage of choice for petrophysical interpretation.
机译:我们为高角度(HA)和水平(HZ)井提供了高性能计算(HPC)环境 评估与储层地质模型相结合。新环境允许访问高级3D 电磁(EM)建模算法和工作流程,用于解释这些中的电阻率测量 井和复杂的3D场景,超越了常规的标准分层介质模型 垂直井和斜井的解释。这种方法对于新一代的深层处理尤为重要 定向电阻率工具,为储层规模的结构提供敏感性。 3D测井建模是作为插件地质建模程序包嵌入的。此工作流程实施 通过将以下内容链接到电阻率工具响应,可以基于潜在的储层几何模型对它们进行建模 并行运行在PC群集和网格上的模拟器。然后,将测井记录中包含的信息用于微调 3D储层模型。日志建模的结果作为更改传播到支柱网格模型,该模型 随后以自动化方式将其包含在地理建模包中。 最近,一项功能齐全的研究原型被部署在一个大型碳酸盐田间研究中,用于解释 使用多个电缆和随钻测井仪测井的大量不同长度的水平井。水库 该模型是使用地震和垂直井数据建立的,并通过基于模型的解释对数百个 水平测井。我们介绍了该过程中使用的工作流程,从附近的油藏模型提取中 井眼,进行交互式模型编辑(例如结构更新或属性调整),直到最终阶段 将在地理模型支柱网格的2D“幕”截面中传播的更改传播回3D储层 模型。利用这种新的建模环境可以极大地提高效率,这使它成为了建模的基础。 岩石物理解释的首选软件包。

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