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Modeling and analysis of wormhole formation in reactive dissolution of carbonate rocks

机译:碳酸盐岩反应性溶蚀中虫洞形成的建模与分析

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摘要

A two-scale continuum model is used to simulate reactive dissolution of carbonate rocks in radial flow. The three main types of patterns observed in linear and radial flow experiments, namely, compact, wormhole and uniform patterns are numerically simulated. The fractal nature of wormholes observed in laboratory experiments is established and confirmed through simulations and the fractal dimension is quantitatively matched. The dependence of wormhole fractal dimension, optimum injection rate and minimum pore volumes required to breakthrough the medium on heterogeneity magnitude and aspect ratio is investigated. A new criterion to predict the optimum injection rate for wormhole formation in radial flow is derived and validated. It is observed that the wormhole penetration depth increases with injection time as t(b,) where the exponent b is found to be approximately 0.66, as observed in the experiments. A critical level of heterogeneity magnitude seems to exist below which the minimum pore volumes required to breakthrough are much higher. (c) 2006 Elsevier Ltd. All rights reserved.
机译:使用两尺度连续模型来模拟碳酸盐岩在径向流中的反应性溶解。数值模拟了在线性和径向流实验中观察到的三种主要模式,即紧密模式,虫孔模式和均匀模式。建立并通过模拟确定了在实验室实验中观察到的虫洞的分形性质,并且分形维数得到了定量匹配。研究了虫洞的分形维数,最佳注入速率和突破介质所需的最小孔体积与异质性大小和纵横比的关系。推导并验证了预测径向流中虫洞形成的最佳注入速率的新标准。可以观察到,虫洞穿透深度随注入时间的增加而增加,为t(b,),在实验中观察到,发现指数b约为0.66。似乎存在非均质性的临界水平,低于该水平时,穿透所需的最小孔体积要高得多。 (c)2006 Elsevier Ltd.保留所有权利。

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