首页> 外文会议>SPE Symposium: Hydraulic Fracturing in Russia. Experience and Prospects >Advanced Modeling and New Fit for Purpose Fluids Unlock Potential of Hot Carbonate Reservoirs During Acid Fracturing in Uzbekistan
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Advanced Modeling and New Fit for Purpose Fluids Unlock Potential of Hot Carbonate Reservoirs During Acid Fracturing in Uzbekistan

机译:先进的建模和新的适用于目的流体解锁乌兹别克斯坦酸性压裂过程中的热碳酸盐储层的潜力

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Selection of the optimum production stimulation strategy depends on the given reservoir and well parameters,with their uncertainties.This study proposes reservoir property-dependent profitability(RPDP)plots as a tool for stimulation treatment type selection.These plots helped to define acid fracturing as an optimum stimulation strategy for hot carbonate reservoirs,which are described in case studies.The presented case studies describe implementation of an advanced approach to acid fracturing design and execution.The advanced approach consists of three key components.First is use of a single-phase retarded acid to achieve longer etched fracture half lengths,decrease volume of the treatment,and mitigate the potential for anhydrite precipitation.The second component of the approach is employing linear gel as a pad to minimize water breakthrough risks but,at the same time,provide adequate viscosity during the fracturing process.The third component is implementation of an advanced acid fracturing simulator,which can model complex acid-rock interaction and transport processes.The combined advanced acid fracturing approach was applied to the design and execution of 15 acid fracturing jobs in Uzbekistan.Post-treatment production results showed that 300% productivity index(PI)increase was achieved for the entire set of wells.In comparison with the existing standard approach,the same PI increase was achieved with 70% less fluid pumped,and water breakthrough risk was successfully mitigated by optimization of fluid volumes in an advanced fracturing simulator.
机译:选择最佳的生产刺激策略取决于给定的储层和井参数,其不确定性。本研究提出了储层性能相关性(RPDP)地块作为刺激处理类型选择的工具。这些图有助于将酸压缩定义为在案例研究中描述的热碳酸盐储层的最佳刺激策略。呈现的案例研究描述了酸性压裂设计和执行的先进方法的实施。先进的方法包括三个关键组件。首先使用单相延迟酸以达到较长的蚀刻骨折半长,减少治疗的体积,并减轻含钙盐沉淀的可能性。该方法的第二个部件采用线性凝胶作为垫,以尽量减少水突破性风险,但同时提供足够的水突破性风险压裂过程中的粘度。第三组分是先进的酸FRAC的实施图灵模拟器,可以模拟复杂的酸岩相互作用和运输过程。乌兹别克斯坦15酸压裂工作的设计和执行应用.Post治疗生产结果表明,300%的生产率指数(PI)对于整个井来实现增加。与现有的标准方法相比,通过70%的流体泵浦实现了相同的PI增加,通过优化先进的压裂模拟器中的流体体积来成功减轻水突破性风险。

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