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首页> 外文期刊>Journal of Petroleum Science & Engineering >Analysis and simulation of rheological behavior and diverting mechanism of In Situ Self-Diverting acid
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Analysis and simulation of rheological behavior and diverting mechanism of In Situ Self-Diverting acid

机译:原位自转移酸的流变行为和转向机理分析与模拟

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SDVA acid is one kind of In Situ Self-Diverting acid fluids that are widely used for diverting acid into a low-permeability zone in carbonate reservoir treatment, thus stimulating the production of the heterogeneous reservoir effectively. However, the rheological behavior and diverting mechanism of In Situ Self-Diverting acid (SDVA acid) is so complicated that no models reported can perfectly simulate the acidizing process of SDVA acid, especially in radial flow. In this paper, we study the factors influencing rheological behavior such as pH value, calcium ion concentration and SDVA concentration. An empirical rheological model is developed to describe the relationship between the apparent viscosity of SDVA acid and the coefficient of pH, calcium ion and SDVA. Based on the two-scale continuum models, a numerical model is developed to describe reaction, transportation and diversion of SDVA acid in carbonate rocks for linear flow and radial flow. From the simulation results, the gel region is observed around the wormholes and branches, and this high-resistance region limits the propagation of wormholes more seriously in the radial direction compared to the length direction of linear core. When the acidizing is performed in a single linear core or in a single radial core, the injection pressure drop decreases monotonically versus the injected pore volume of HCl acid. But when SDVA acid is injected, the pressure drop increases initially and decreases afterward. The pressure drop curves from simulations are consistent with experimental results. Finally, we analyze the diversion results in parallel core set-up with different permeability, where the wormhole propagates much longer in the low-permeability core when SDVA acid is injected compared to HCl acid systems and wormhole breaks in high-permeability core firstly no matter which acid systems are used. The curves of diversion flow rate in the parallel core simulation further confirms that the diverting mechanism is simulated successfully for SDVA acid by models developed in this paper. (C) 2015 Elsevier B.V. All rights reserved.
机译:SDVA酸是一种原位自转移酸液,在碳酸盐岩储层处理中被广泛用于将酸分流到低渗区,从而有效地刺激了非均质储层的生产。然而,原位自转移酸(SDVA酸)的流变行为和转移机理是如此复杂,以至于没有报道的模型能够完美地模拟SDVA酸的酸化过程,特别是在径向流中。在本文中,我们研究了影响流变行为的因素,例如pH值,钙离子浓度和SDVA浓度。建立了经验流变模型来描述SDVA酸的表观粘度与pH,钙离子和SDVA系数之间的关系。基于两尺度连续模型,建立了一个数值模型来描述SDVA酸在碳酸盐岩中线性流和径向流的反应,迁移和转移。根据仿真结果,在虫洞和分支周围观察到凝胶区域,与线性芯的长度方向相比,该高电阻区域更严重地限制了虫洞在径向上的传播。当在单个线性核或单个径向核中进行酸化时,注入压降相对于HCl酸的注入孔体积单调降低。但是,当注入SDVA酸时,压降开始时增大,然后下降。模拟的压降曲线与实验结果一致。最后,我们分析了在具有不同渗透率的平行岩心结构中的转移结果,其中注入SDVA酸时,与HCl酸体系相比,在低渗透率岩心中虫孔的传播时间更长,而首先在高渗透率岩心中虫孔破裂使用哪种酸体系。并行岩心模拟中的分流流速曲线进一步证实,通过本文开发的模型成功地模拟了SDVA酸的转向机理。 (C)2015 Elsevier B.V.保留所有权利。

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