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Improving Wormholing Efficiency in Carbonates with a Novel System Based on Hydrochloric Acid

机译:基于盐酸的新型系统提高碳酸盐液中的虫胶效率

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This paper presents a single-phase alternative to widely used emulsified acid systems. The performance of the new single-phase acid was evaluated for both fracturing and matrix operations and benchmarked against hydrochloric acid and emulsified acid. Wormhole experiments were performed in Indiana limestone cores up to 300°F. The rate of wormhole propagation was used a measure to compare the performance of the acid systems. Diffusion constants were measured with a rotating disk experiment (RDE) at different temperatures. Laboratory measurements characterized the viscosity and friction pressure of each of the acid systems. Two single-phase retarded acid concepts were evaluated. In wormhole experiments with Indiana limestone, the best single-phase retarded acid possesses lower pore volume to breakthrough (PVBT) than unmodified HCl across all injection rates. The PVBT are substantially decreased for the single-phase retarded acid at low injection rates, meaning that when HCl enters the conical wormhole regime, the single- phase retarded acid is still efficiently forming dominant wormholes. At many injection rates, the single- phase retarded acid possesses similar PVBT to emulsified acid. These observations are confirmed up to 300°F. Diffusion coefficients obtained from the RDE are up to 10 times lower for the single-phase retarded acid at 220°F. Friction reducers hydrate quickly and show low friction pressures in the single-phase retarded acid. The new single-phase system matches the performance of emulsified acids while eliminating issues that confront them.
机译:本文呈现了广泛使用的乳化酸系统的单相替代品。评价新的单相酸的性能,用于压裂和基质操作,并与盐酸和乳化酸进行基准。在印第安纳石灰石核心中进行蠕虫孔实验,高达300°F。使用蠕虫孔繁殖的速率来比较酸系统的性能。用不同温度的旋转盘实验(RDE)测量扩散常数。实验室测量表征了每种酸系统的粘度和摩擦压力。评估了两种单相延迟酸概念。在印第安纳石灰石的虫洞实验中,最好的单相延迟酸具有较低的孔体积(PVBT),而不是对所有注射率的未修饰的HCl突破(PVBT)。单相延迟酸在低注射率下显着降低PVBT,这意味着当HCL进入锥形虫洞时,单相延迟酸仍然有效地形成显性虫洞。在许多注射速率下,单相延迟酸与乳化酸具有类似的PVBT。这些观察结果可确认高达300°F。从RDE获得的扩散系数在220°F处的单相延迟酸可达10倍。摩擦减速剂迅速水合,并在单相延迟酸中显示出低摩擦压力。新的单相系统与乳化酸的性能相匹配,同时消除了对抗它们的问题。

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