天然裂缝性储层模拟目前的研究现状-第二部分-矩阵断裂转移和数值研究的典型特征

P. Lemonnier, B. Bourbiaux
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引用次数: 84

摘要

天然裂缝性油藏蕴藏着世界上大量的石油储量。这类油藏的开采对油藏工程师来说是一个挑战。使用油藏模拟器可以帮助油藏工程师了解主要的物理机制,选择最佳的采收率过程并对其进行优化。自60年代首次发表双孔隙度概念以来,已经取得了重大进展。本文和前一篇(第1部分)介绍了目前工业模拟器中使用的建模技术。在模拟细胞尺度上预测基质断裂转移的最佳方法没有明确的答案,工业模拟器中采用了各种方法。为了更好地理解所提出的流动公式和模拟方法,本文重点研究了驱动裂缝和基质介质内部流动和相互作用/交换的物理机制的建模。本文还介绍了裂缝性储层数值模拟的典型特征,概述了地质力学效应的实现,不确定性评估方法在裂缝性气藏中的应用,最后介绍了裂缝性储层的历史匹配方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Naturally Fractured Reservoirs. State of the Art - Part 2 – Matrix-Fracture Transfers and Typical Features of Numerical Studies
Naturally fractured reservoirs contain a significant amount of the world oil reserves. The production of this type of reservoirs constitutes a challenge for reservoir engineers. Use of reservoir simulators can help reservoir engineers in the understanding of the main physical mechanisms and in the choice of the best recovery process and its optimization. Significant progress has been made since the first publications on the dual-porosity concept in the sixties. This paper and the preceding one (Part 1) present the current techniques of modeling used in industrial simulators. The optimal way to predict matrix-fracture transfers at the simulator cell scale has no definite answer and various methods are implemented in industrial simulators. This paper focuses on the modeling of physical mechanisms driving flows and interactions/ exchanges within and between fracture and matrix media for a better understanding of proposed flow formula and simulation methods. Typical features of fractured reservoir numerical simulations are also described with an overview of the implementation of geomechanics effects, an application of uncertainty assessment methodology to a fractured gas reservoir and finally a presentation of a history matching methodology for fractured reservoirs.
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