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Application of VES Acid System on Carbonate Rocks with Uninvaded Matrix for Acid Etching and Fracture Propagation

机译:VES酸体系在无侵彻基质的碳酸盐岩上的酸蚀和断裂扩展应用

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We investigated the performance of viscoelastic surfactant (VES) solution when applied in treatment on the uninvaded matrix using core flooding tests to analyze the impact of VES/CaCl 2 concentration on fluid viscosity. In this paper, core samples from Tahe carbonate reservoir, with an average permeability less than 0.02 × 10 ?3 μm ?2 and a small average porosity in the range of approximately 0.04–5.24% are used in the experiments. Computed tomography (CT) scanning is used to provide a detailed description of inner structure variation of cores after the acid system treatment. The results confirmed that a large pressure difference contributed to fracture propagation and the relative permeability of water increased significantly after the treatment. It was also found that higher concentrations of VES and/or Ca 2+ induced higher viscosity and a stronger fracturing effect, while a lower concentration improved the reaction rates and etching effect, generating small worm holes inside the core. Foam in-situ produced during the etching process is the major contributor to the fluid viscosity enhancement. The permeability of fracture formed on the surface of the core is more sensitive to the confining pressure. These findings can help better understand the rheological properties of the acid system and etching and fracturing mechanisms during acid treatment, and which provides instructions for field implementation.
机译:我们使用岩心驱替试验研究了粘弹性表面活性剂(VES)溶液在未侵入基质上的处理性能,以分析VES / CaCl 2浓度对流体粘度的影响。在本文中,塔河碳酸盐岩储层的岩心样品的平均渗透率小于0.02×10?3μm?2,平均孔隙率小,约为0.04-5.24%。计算机断层扫描(CT)扫描用于提供酸系统处理后岩心内部结构变化的详细描述。结果证实,较大的压差有助于裂缝扩展,处理后水的相对渗透率显着提高。还发现较高浓度的VES和/或Ca 2+引起较高的粘度和较强的压裂效果,而较低的浓度则提高了反应速率和蚀刻效果,从而在芯内部产生了小的蠕虫孔。在蚀刻过程中原位产生的泡沫是增加流体粘度的主要因素。在芯表面形成的裂缝的渗透率对围压更为敏感。这些发现可以帮助您更好地了解酸系统的流变特性以及酸处理过程中的蚀刻和断裂机理,并为现场实施提供指导。

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