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Assessing Structural Uncertainty Ranges in Static Models by Incorporating Structural Control Points from Horizontal Wells: A Case Study of a Middle East Carbonate Reservoir

机译:通过纳入水平井的结构控制点评估静态模型中的结构不确定性范围:中东碳酸盐储层的案例研究

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The rationale of structural uncertainty analysis in reservoir modeling is to quantify the range of probable Gross Rock Volume (GRV) s and searchfor the means to reduce this range as much as possible. This task considers running different scenarios and/or structural configurations based on the observed mismatch between structural depth estimation from seismic mapping and stratigraphic tops derived from well data. Integrated multi-disciplinary teams can collaboratively eliminate reservoir uncertainties at the well location, however uncertainty remains in the interwell area. The challenge for any reservoir characterization team is to share expertise across disciplines in order to mitigate the lack of information with scientific reasoning. In this way the range of uncertainties impacting business decisions, development scenarios or data acquisition plans are minimised. The workflow summarized here is an example of how to utilize structural elements from existing wells to quantify intrinsic GRV uncertainty while building static models. Offshore Field developments usually have a bigger horizontal well count than the ideal vertical penetrations and this case study is no exception in this case study. The ultimate goal of this publication is to generate the inputs required for a more realistic set of structural realizations that fulfil all of the current understanding from horizontal well placement and their intrinsic structural uncertainty.
机译:储层建模中结构不确定性分析的基本原理是量化可能的总岩石体积(GRV)S的范围,并以尽可能减少该范围的方法。该任务考虑基于从井数据的地震映射和地层顶部的结构深度估计之间观察到的不匹配来运行不同的场景和/或结构配置。集成的多学科团队可以协作地消除井位置的水库不确定性,但是在接口区的不确定性仍然存在。任何水库特征团队的挑战是分享跨学科的专业知识,以减轻缺乏科学推理的信息。通过这种方式,影响业务决策的不确定性范围,开发方案或数据采集计划最小化。这里总结的工作流程是如何利用现有井的结构元素来量化在构建静态模型的同时量化内部GRV不确定性的示例。海上现场的发展通常具有比理想的垂直渗透率更大的横向井数,在这种情况下,这种情况研究并非例外。本出版物的最终目标是生成一个更现实的结构性实现所需的输入,这些结构实现从水平井放置和其内在结构不确定性中满足所有目前的理解。

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