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Modeling technique for generating fluvial reservoir descriptions conditioned to static and dynamic data.

机译:用于生成以静态和动态数据为条件的河流储层描述的建模技术。

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摘要

One of the characteristic features of fluvial reservoirs is the presence of sinuous sand-filled channels embedded in the background of floodplain shale. In fluvial reservoirs, hydrocarbon reserves are mostly contained in a number of distributed sand bodies isolated by faults or partially connected to one another via good permeability/porosity material but small pathways. This poses special challenges for reservoir modeling because the existence of such connected pathways and barriers between isolated fluvial bodies has great influence on fluid transport and thus production profiles. Detailed knowledge of sand channel geometry, spatial distribution, and connectedness are essential to develop a model that describes fluid flow accurately, predicts the future performance reliably, and helps in decision making.; One aspect of this work was to develop a mathematical foundation to describe multiple channels dynamically and realistically. Another aspect was to incorporate the mathematical formulations into an automated history matching process to enable the calculation of reservoir heterogeneity and sensitivity coefficients as functions of channel parameters.; This work proposed a subcell technique to approach these challenges. We found that this technique provides an efficient method for computing the sensitivity coefficients accurately and serves as a key for fast and effective inversion. The method is capable of supporting a closed-inversion loop matching various sources of static and dynamic data simultaneously. The procedure also enables the assessment of uncertainty associated with the estimated channel geometry, spatial distribution, and permeability/porosity fields.; The application of the proposed technique was demonstrated through several examples in a two-phase, water-oil case. In these examples, the data that was matched included static (geology, geophysics, and petrophysics) and dynamic data such as permanent down-hole pressure and water-oil ratio histories, combined with the information available from 4-D seismic surveys. The resulting reservoir descriptions included multiple channels with different orientation, thickness, width/thickness ratio, length, sinuosity, and permeability/porosity contrast.
机译:河流水库的特征之一是洪泛区页岩背景中埋藏着弯曲的充沙河道。在河流储层中,碳氢化合物储量主要包含在许多由断层隔离或通过良好的渗透率/孔隙率材料但路径狭窄的部分相互连接的分布式砂体中。这对油藏建模提出了特殊的挑战,因为在孤立的河床体之间存在这样的连通路径和障碍物,对流体运移产生了很大影响,因此对生产剖面也有很大影响。对沙子通道的几何形状,空间分布和连通性的详细了解对于开发能够准确描述流体流动,可靠地预测未来性能并有助于决策的模型至关重要。这项工作的一个方面是建立数学基础,以动态和现实的方式描述多个渠道。另一个方面是将数学公式合并到一个自动的历史记录匹配过程中,以使计算储层非均质性和敏感性系数成为通道参数的函数。这项工作提出了一种子电池技术来应对这些挑战。我们发现,该技术为准确计算灵敏度系数提供了一种有效的方法,并且是快速有效反转的关键。该方法能够支持同时匹配各种来源的 static dynamic 的闭环循环。该程序还可以评估与估算的通道几何形状,空间分布和渗透率/孔隙度场相关的不确定性。通过在水油两相情况下的几个实例,证明了所提出技术的应用。在这些示例中,匹配的数据包括 static (地质,地球物理学和石油物理学)和 dynamic 数据,例如永久井下压力和水油比历史记录,结合可从4-D地震勘测获得的信息。最终的储层描述包括多个方向,厚度,宽度/厚度比,长度,弯曲度和渗透率/孔隙度对比不同的通道。

著录项

  • 作者

    Phan, Vinh Quang.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 271 p.
  • 总页数 271
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

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