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Thermoelastic Fracturing on Water Injectors as Part of Injectivity Enhancement in Giant Offshore Carbonate Field. Case Study

机译:热弹性压裂在水喷射器上作为巨型海上碳酸盐场的注射性增强的一部分。 案例分析

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Water Injection is part of secondary recovery mechanism which aims to increase oil recovery by increasing or maintaining the reservoir pressure and provide additional pressure support. Most of the time water injection is controlled under matrix injection below the fracture pressure in order to avoid the creation of fractures and risk of bypass oil. However, there are two different mechanisms of fracture creation in water injection: poroelastic fracturing and thermoelastic fracturing. First one will activate above fracture point, while the second one creates below the original fracture point and most of the time missed in reservoir field development Normally fractures can be categorized in 3 groups:-Fractures induced due to increase of injection pressure above pore pressure. (Poroelastic fractures)-Fractures induced due to drilling activities (Overbalance drilling)-Fractures induced due to injection of cold water. Fractures which are induced due to difference in temperature between injected fluid and rock fluid called thermoelastic fractures. Thermoelastic fracturing is controlled primarily by the difference in temperature between reservoir rocks and injected fluids. This paper will focus on thermoelastic fractures and its propogation along the formation. The analysis performed in a giant offshore carbonate field in Middle East on a well level as well as field level through injection modules. This paper will describe the mechanisms of thermoelastic fracturing and methodology to identify this type of fractures in water injectors through several cases studies.
机译:注水是二级回收机构的一部分,其旨在通过增加或维持储层压力来提高油回收并提供额外的压力支持。大多数时间注水在骨折压力下方的基质注射下控制,以避免骨折和旁路油的风险。然而,在注水中存在两种不同的骨折创造机制:孔弹性压裂和热弹性压裂。第一个将激活上面的骨折点,而第二个在原始骨折点上产生,大部分时间都错过了储层场发育,通常骨折可以分类为3组: - 由于喷射压力的增加而诱导的孔隙诱导。 (孔弹性骨折) - 由于注射冷水而引起的钻孔活动(过分钻钻)诱导诱导。由于喷射液和岩石液之间的温度差异而诱导的裂缝。热弹性压裂主要通过储层岩石和注射流体之间的温度差异来控制。本文将专注于热弹性骨折及其沿形成的漂移。通过注射模块在中东的巨型海上碳酸盐田中进行的分析。本文将描述热弹性压裂和方法的机制,通过几种案例研究识别水注射器中这种类型的骨折。

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