首页> 外文会议>SPE International Hydraulic Fracturing Technology Conference and Exhibition >Acid Wormholing in Multistage Acid Fractured Wells Completed in Tight Naturally Fractured Dolomite Formation: Benefits and Impacts on Acid Fracturing Stimulation Design
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Acid Wormholing in Multistage Acid Fractured Wells Completed in Tight Naturally Fractured Dolomite Formation: Benefits and Impacts on Acid Fracturing Stimulation Design

机译:在多级酸裂缝孔中酸性虫细胞,在紧密的自然骨折的白云岩地层中完成:酸性压裂刺激设计的益处和影响

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Closed-fracture acidizing(CFA)technique has been proved to be a successful practice in stimulating tight carbonate formations.Acid is injected at rates lower than fracturing pressure to enhance the fracture conductivity and productivity.CFA operations are often associated with acid wormholing,promoted by acid leak-off in the formation.The objective of this study is to develop a model that represents these wormholes demonstrating their performance in enhancing the acid fracturing treatment in tight naturally fractured dolomite reservoirs under field conditions and investigate the effect of different parameters on acid wormholing during CFA.The wormholes propagation is modeled by the two-scale continuum model by developing a 3D computational fluid dynamics(CFD)model including the fracture geometry,conductivity of the fracture and the reaction kinetics between the acid system and the formation.The formation that is utilized in this study is tight naturally fractured dolomite formation exhibits low transmissibility and a considerable degree of heterogeneity.Well geometry was investigated to analyze the effect of injection area in the closed fracture on acid wormholing.Sensitivity analysis was conducted to cover the effect of several factors including acid concentration,injection rate,formation permeability and fracture conductivity to depict the actual flow in the formation.The presence of natural fractures was studied with the emphasis on their orientation and direction with respect to the hydraulic fracture whether it is parallel or perpendicular.Model upscaling was investigated to come up with a qualitative relationship between the acid volumes used in CFA model and the acid volumes used in actual field scale.Acid injection rates in the closed-fracture in CFA operations follow a similar trend as the acid performance curve in matrix acidizing in term of dissolution patterns where a face dissolution pattern at the injection inlet of fracture occurs at low and high injection rates.Higher acid concentration accelerates the reaction between the acid and rock matrix and yields faster results than the lower concentrations.Vertical wells exhibit larger injection area in contact with the closed-fracture than the horizontal wells,which promote larger propagation of these wormholes with less total inject volumes of acid during CFA.Formation permeability coupled with acid fracture conductivity have significant role in the acid volumes used in CFA that are required to deliver the acid certain distance in the formation,and it affect the wormholing density significantly.The presence of natural fractures in the parallel or transversal direction with respect to hydraulic fracture play a key role in generating flow networks between hydraulic fracture and natural fractures that are induced by the acid leakoff in the formation regardless of the intersected natural fractures with hydraulic fracture.Model upscaling demonstrates the relationship that clarifies the total acid volumes injected in actual field applications that have to be used in the design of optimum acid fracture stages in multistage acid fracturing and to estimate the optimum spacing between the stages which will maximize the performance of this completion.
机译:已证明闭合骨折酸化(CFA)技术是刺激紧密碳酸盐的成功实践。在低于压裂压力的速率下注射acid以增强骨折导电性和生产率。CFA操作通常与酸性毒液相关,促进酸泄漏在形成。本研究的目的是开发一种代表这些虫洞的模型,该模型表明它们在避免天然条件下加强了酸性碎屑储存器中的酸性压裂处理,并研究了不同参数对酸性虫洞的影响在CFA期间。通过开发包括裂缝几何形状的3D计算流体动力学(CFD)模型,裂缝的3D计算流体动力学(CFD)模型和酸系统之间的反应动力学和形成的反应动力学来建模蠕虫孔的传播。形成在本研究中使用的是紧密的自然裂缝的白云石形成exh Ibits低传导性和相当程度的异质性。研究了几何形状,分析了注射面积在酸性虫洞上的闭合断裂中的效果。进行了浓度分析,以涵盖包括酸浓度,注射率,形成渗透性等若干因子的效果。骨折导电性以描绘形成的实际流动。研究了自然骨折的存在,强调它们相对于液压骨折的定向和方向,无论是平行的还是垂直的。调节升高,提高了定性关系在CFA模型中使用的酸体积和实际场比例中使用的酸体积。CFA操作中闭合骨折中的酸注射率遵循类似的趋势作为基质酸化的酸性能曲线,其溶解图案的溶解图案中的溶解模式骨折注射入口处的图案发生在低且高伤害中CTION rates.higher酸浓度加速酸和岩石基质之间的反应,得到比较低浓度更快的结果。易阱井与水平孔的闭合骨折接触,这促进了这些虫洞的较大繁殖在CFA期间酸的总喷射体积较少。与酸断裂电导率相结合的变形渗透性在CFA中使用的酸体积具有显着作用,该酸体积是在形成中递送酸的一定距离,并且它显着影响虫洞密度。存在在并联或横向方向天然裂缝相对于水力压裂在产生的水力裂缝和天然裂缝了由酸滤失在地层中感应不管相交天然裂缝液压fracture.Model升频演示之间流网络中发挥关键作用澄清总数的关系在实际现场应用中注入的酸度必须用于多级酸压裂中的最佳酸性断裂阶段的设计,并估计阶段之间的最佳间距,这将最大化该完成的性能。

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