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Simulation of Wormhole in Carbonate Acidizing Using a New Diffusion Limited Aggregation Model

机译:用新的扩散受限聚集模型模拟碳酸盐化过程中的虫孔

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Wormholes are the main characteristic shapes resulting from the carbonate reservoir acidizing. Understanding wormhole patterns can determine the success of acidizing to a large extent. Due to various influences, such as the reaction rate between the acid and rock, and anisotropy of formation, the shapes of wormholes are quite complex and stochastic. So simulating the wormholes by traditional methods cannot be accurate. A Diffusion Limited Aggregation (for short ȁC;DLAȁD;) model of wormholes in dual medium is presented after modifying the traditional DLA model. After discussing the relationship between simulation parameters and wormholes'' fractal dimension, it is revealed that the bigger injected acid volume and porosity, the longer wormholes can be formed. When the natural fractures patterns are complicated(even fractal), it is necessary to connect natural fractures and pores in the formation and get bigger fractal dimensions of wormholes, which may lead to a successful acidizing treatment.
机译:孔眼是碳酸盐岩储层酸化的主要特征形状。了解虫洞模式可以在很大程度上确定酸化的成功程度。由于各种因素的影响,例如酸与岩石之间的反应速度以及地层的各向异性,虫洞的形状非常复杂且随机。因此,用传统方法模拟虫洞是不准确的。在修改了传统的DLA模型之后,提出了一种双重介质中虫洞的扩散受限聚集(简称ȁC;DLAȁD;)模型。在讨论了模拟参数与虫洞的分形维数之间的关系后,发现注入的酸量和孔隙率越大,形成的虫洞就越长。当天然裂缝形态复杂(甚至分形)时,必须将天然裂缝和地层中的孔隙连接起来,并获得更大的虫孔分形维数,这可能导致成功的酸化处理。

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