Full Field Unconventional Carbonate Reservoir Modelling Using Adaptive Simulation Technique

S. Ursegov, A. Zakharian, E. Taraskin
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引用次数: 4

Abstract

A new adaptive approach is proposed to create full field geological and hydrodynamic models of the unconventional carbonate reservoirs with heavy oil. In the adaptive geological model, the number of layers of its grid does not exceed the number of layers identified by the results of detailed correlation, while all model parameters are constructed depending on seismic data. The grid of the adaptive hydrodynamic model completely coincides with the geological grid without upscaling. In the adaptive hydrodynamic model, the system of differential equations describing the filtration process is solved according to the rules of the theory of percolation and cellular automata. The adaptive hydrodynamic models are always history matched. Calculation of the adaptive hydrodynamic model allows generating the distribution of remaining oil reserves and reservoir pressure. Using the adaptive hydrodynamic model, it is also possible to evaluate the development strategies of the reservoirs, using the iterative fuzzy-logical method to determine the oil decline rates first, and then to solve the system of equations for the interference of the wells. The proposed adaptive models are not simplified, they are complex and requires practically the same run time as their deterministic analogues. However, the adaptive models are easier and cheaper for users.
基于自适应模拟技术的非常规碳酸盐岩油藏全油田建模
提出了一种新的自适应方法来建立含稠油非常规碳酸盐岩储层的全油田地质和水动力模型。在自适应地质模型中,其网格层数不超过详细相关结果识别的层数,所有模型参数都是根据地震数据构建的。自适应水动力模型的网格与地质网格完全重合,没有上尺度。在自适应水动力模型中,根据渗流理论和元胞自动机的规则求解描述过滤过程的微分方程组。自适应水动力模型总是历史匹配的。自适应水动力模型的计算可以得到剩余油储量和储层压力的分布。利用自适应水动力模型,还可以对储层开发策略进行评价,利用迭代模糊逻辑方法先确定原油递减率,然后求解井间干扰方程组。所提出的自适应模型并不是简化的,它们很复杂,并且实际上需要与它们的确定性类似物相同的运行时间。然而,自适应模型对用户来说更容易、更便宜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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