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A method for generating volumetric fault zone grids for pillar gridded reservoir models

机译:一种为支柱网格储层模型生成体积断层带网格的方法

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摘要

The internal structure and petrophysical property distribution of fault zones are commonly exceedingly complex compared to the surrounding host rock from which they are derived. This in turn produces highly complex fluid flow patterns which affect petroleum migration and trapping as well as reservoir behavior during production and injection. Detailed rendering and forecasting of fluid flow inside fault zones require high-resolution, explicit models of fault zone structure and properties. A fundamental requirement for achieving this is the ability to create volumetric grids in which modeling of fault zone structures and properties can be performed. Answering this need, a method for generating volumetric fault zone grids which can be seamlessly integrated into existing standard reservoir modeling tools is presented. The algorithm has been tested on a wide range of fault configurations of varying complexity, providing flexible modeling grids which in turn can be populated with fault zone structures and properties.
机译:断层带的内部结构和岩石物性分布通常与衍生出它们的周围岩体相比极其复杂。反过来,这会产生高度复杂的流体流动模式,从而影响石油的迁移和捕集以及生产和注入过程中的储层行为。断层区域内流体流动的详细绘制和预测需要高分辨率,显式的断层区域结构和属性模型。实现此目的的基本要求是创建体积网格的能力,在其中可以对断层带结构和属性进行建模。为满足这一需求,提出了一种生成体积断层带网格的方法,该方法可以无缝集成到现有的标准储层建模工具中。该算法已在各种复杂程度各异的故障配置上进行了测试,从而提供了灵活的建模网格,进而可以填充故障带的结构和属性。

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