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Applications of Level Set and Fast Marching Methods in Reservoir Characterization

机译:水平集和快速行进方法在储层表征中的应用

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摘要

Reservoir characterization is one of the most important problems in petroleum engineering. It involves forward reservoir modeling that predicts the fluid behavior in the reservoir and inverse problem that calibrates created reservoir models with given data. In this dissertation, we focus on two problems in the field of reservoir characterization: depth of investigation in heterogeneous reservoirs, and history matching and uncertainty quantification of channelized reservoirs.The concept of depth of investigation is fundamental to well test analysis. Much of the current well test analysis relies on analytical solutions based on homogeneous or layered reservoirs. However, such analytic solutions are severely limited for heterogeneous and fractured reservoirs, particularly for unconventional reservoirs with multistage hydraulic fractures. We first generalize the concept to heterogeneous reservoirs and provide an efficient tool to calculate drainage volume using fast marching methods and estimate pressure depletion based on geometric pressure approximation. The applicability of proposed method is illustrated using two applications in unconventional reservoirs including flow regime visualization and stimulated reservoir volume estimation.Due to high permeability contrast and non-Gaussianity of channelized permeability field, it is difficult to history match and quantify uncertainty of channelized reservoirs using traditional approaches. We treat facies boundaries as level set functions and solve the moving boundary problem (history matching) with the level set equation. In addition to level set methods, we also exploit the problem using pixel based approach. The reversible jump Markov Chain Monte Carlo approach is utilized to search the parameter space with flexible dimensions. Both proposed approaches are demonstrated with two and three dimensional examples.
机译:储层表征是石油工程中最重要的问题之一。它涉及预测储层中流体行为的正向储层建模,以及利用给定数据校准创建的储层模型的反问题。本文着眼于储层表征领域中的两个问题:非均质储层的研究深度;通道化储层的历史匹配和不确定性量化。研究深度的概念是试井分析的基础。当前大多数的试井分析都依赖于基于均质或分层储层的分析解决方案。但是,这种分析解决方案严重限制于非均质和裂缝性油藏,尤其是具有多级水力压裂的非常规油藏。我们首先将该概念推广到非均质油藏,并提供一种有效的工具来使用快速行进方法计算排水量并基于几何压力近似值估算压力消耗。通过在非常规油藏中的两个应用实例说明了该方法的适用性,包括流态可视化和受激油藏体积估计。由于高渗透率对比和通道化渗透率场的非高斯性,难以对通道化油藏进行历史匹配和量化不确定性。传统方法。我们将相边界视为水平集函数,并使用水平集方程式解决运动边界问题(历史匹配)。除了水平集方法外,我们还使用基于像素的方法来研究该问题。利用可逆跳马尔可夫链蒙特卡罗方法来搜索具有灵活尺寸的参数空间。两种建议的方法均通过二维和三维示例进行了演示。

著录项

  • 作者

    Xie Jiang;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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