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Flow Rate Dependent Skin in Water Disposal Injection Well:Case Study

机译:流量依赖性皮肤在水处理注射液中:案例研究

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Re-Injection is one of the most important methods to dispose fluid associated with oil and natural gas production. Disposed fluids include produced water, hydraulic fracture flow back fluids, and drilling mud fluids. Several formation damage mechanisms are associated with the injection including damage due to filter cake formed at the formation face, bacteria activity, fluid incompatibility, free gas content, and clay activation. Fractured injection is typically preferred over matrix injection because a hydraulic fracture will enhance the well injectivity and extend the well life. In a given formation, the fracture dimensions change with different injection flow rates due to the change in injection pressures. Also, for a given flow rate, the skin factor varies with time due to the fracture propagation. In this study, well test and injection history data of a Class II disposal well in south Texas were used to develop an equation that correlates the skin factor to the injection flow rate and injection time. The results show that with time, the skin factor decreases until such a point at which the fracture dimensions are sufficient without further propagation to handle the injected water volume (stationary fracture). A constant skin factor is noted after this point. At higher injection flow rates, the constant skin factor achieved is lower because of the larger fracture dimensions developed at higher injection flow rates.
机译:重新注入是处理与油和天然气生产相关的流体的最重要方法之一。设置的流体包括生产的水,液压断裂流量回流,以及钻井泥浆液。几种形成损伤机构与注射有关,包括由于在地层面部,细菌活性,流体不相容性,游离气体含量和粘土活化处形成的滤饼引起的损伤。裂缝注射通常优于基质注射,因为液压骨折将增强井的注射性并延长井寿命。在给定的形成中,由于注射压力的变化,裂缝尺寸随着不同的喷射流速而变化。而且,对于给定的流速,皮肤因子随着裂缝传播而随时间而变化。在本研究中,南德克萨斯州II类处置井的井测试和注入历史数据用于开发一种与喷射流速和喷射时间相关的等式。结果表明,随着时间的推移,皮肤因子降低,直到在不进一步繁殖的情况下,裂缝尺寸足以处理注入的水体积(固定断裂)。在这一点之后注意到恒定的皮肤因子。在较高的喷射流速下,由于在更高的喷射流速开发的骨折尺寸较大,所以实现的恒定皮肤因子较低。

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