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Naturally fractured hydrocarbon reservoir simulation by elastic fracture modeling

机译:弹性裂缝模拟模拟天然裂缝性油气藏

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Accurate fluid flow simulation in geologically complex reservoirs is of particular importance in construction of reservoir simulators. General approaches in naturally fractured reservoir simulation involve use of unstructured grids or a structured grid coupled with locally unstructured grids and discrete fracture models. These methods suffer from drawbacks such as lack of flexibility and of ease of updating. In this study, I combined fracture modeling by elastic gridding which improves flexibility, especially in complex reservoirs. The proposed model revises conventional modeling fractures by hard rigid planes that do not change through production. This is a dubious assumption, especially in reservoirs with a high production rate in the beginning. The proposed elastic fracture modeling considers changes in fracture properties, shape and aperture through the simulation. This strategy is only reliable for naturally fractured reservoirs with high fracture permeability and less permeable matrix and parallel fractures with less cross-connections. Comparison of elastic fracture modeling results with conventional modeling showed that these assumptions will cause production pressure to enlarge fracture apertures and change fracture shapes, which consequently results in lower production compared with what was previously assumed. It is concluded that an elastic gridded model could better simulate reservoir performance.
机译:在地质复杂的油藏中进行精确的流体流动模拟在油藏模拟器的构造中尤为重要。天然裂缝储层模拟的一般方法包括使用非结构化网格或将结构化网格与局部非结构化网格和离散裂缝模型相结合。这些方法具有诸如缺乏灵活性和易于更新的缺点。在这项研究中,我通过弹性网格划分裂缝模型,从而提高了柔韧性,特别是在复杂油藏中。所提出的模型通过在生产过程中不会改变的坚硬刚性平面来修正传统的模拟裂缝。这是一个可疑的假设,尤其是在一开始就具有高生产率的油藏中。所提出的弹性断裂模型通过模拟考虑了断裂特性,形状和孔径的变化。该策略仅对于具有高裂缝渗透率和较低渗透性基质的天然裂缝储层以及具有较少交叉连接的平行裂缝是可靠的。弹性裂缝建模结果与常规建模结果的比较表明,这些假设将导致生产压力扩大裂缝孔口并改变裂缝形状,因此与以前的假设相比,导致产量降低。结论是,弹性网格模型可以更好地模拟油藏动态。

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