A Fast Gridding Method for Capturing Geological Complexity and Uncertainty

Xu Yifei, Priyesh Srivastava, Xiao Ma, Karan Kaul, Hao Huang
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Abstract

In this paper, we introduce an efficient method to generate reservoir simulation grids and modify the fault juxtaposition on the generated grids. Both processes are based on a mapping method to displace vertices of a grid to desired locations without changing the grid topology. In the gridding process, a grid that can capture stratigraphical complexity is first generated in an unfaulted space. The vertices of the grid are then displaced back to the original faulted space to become a reservoir simulation grid. The resulting reversely mapped grid has a mapping structure that allows fast and easy fault juxtaposition modification. This feature avoids the process of updating the structural framework and regenerating the reservoir properties, which may be time-consuming. To facilitate juxtaposition updates within an assisted history matching workflow, several parameterized fault throw adjustment methods are introduced. Grid examples are given for reservoirs with Y-faults, overturned bed, and complex channel-lobe systems.
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一种捕获地质复杂性和不确定性的快速网格方法
本文介绍了一种有效的油藏模拟网格生成方法,并对生成网格上的断层并置进行了修正。这两个过程都基于一种映射方法,在不改变网格拓扑的情况下将网格的顶点置换到所需的位置。在网格划分过程中,首先在无断层空间中生成一个能够捕获地层复杂性的网格。然后将网格的顶点移回原始断层空间,成为油藏模拟网格。生成的反向映射网格具有一种映射结构,允许快速和容易地进行故障并置修改。这一特点避免了更新构造框架和再生储层性质的过程,这可能很耗时。为了方便在辅助历史匹配工作流中并置更新,介绍了几种参数化故障差调整方法。给出了具有y型断层、倒转层和复杂通道-叶状体系的储层的网格实例。
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