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Lessons Learned from Using New Chemical Recipe for Acid Stimulation in Water Disposal Wells (Al-Khafji Field)

机译:从水处理井中使用新的化学配方进行酸刺激的经验教训(Al-Khafji Field)

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Acid treatments for dolomite formation with low permeability differ from that applied for calcite rock. Unlike limestone acidizing where HCl reacts with limestone in rapid reaction rate to generate reaction products soluble in water. In Some cases, injectivity well can not effectively improve in dolomite formation with low permeability using conventional 15 wt% HCl acid. In addition, formation damage due to drilling or workover operations can not be removed. Therefore, the process of treating dolomite for injectivitiy improvement may consider a serious issue for acid stimulation. The challenges of dolomite acidizing are to optimize damage removal while maximizing rock permeability with wormhole occurrences. Well DW-4 drilled and completed as horizontal open hole wastewater disposal wells for excess water production from off- shore oil wells in Al-Khafji Field. This well is used to dispose the un-wanted co-produced water which shows injectivity decline with time due to sand plugging and oil content droplet. Several acid stimulation treatments were conducted on subject well with low rate of success due to not considering the dolomite reaction rate and the chemical volume to be used. A simple previous treatment review was conducted to select the best chemical recipe and treatment volume for injectivity improvement . As a result of conducting new chemicals recipe with optimum treatment volume, a major improvement in well injectivity with formation damage removal was obtained. This paper demonstrated new design methodology with extensive field study to address the challenges and the best future operation practices for acid stimulation. It included a pre-flush of mutual solvents, then bullheading stage of 20 wt% HCl with intensifier to accelerate the chemical reaction with dolomite rock. A carefully designed train of treatment fluids was applied to remove formation damage induced by drilling and injection fluids. Injectivity tests before and after each step of the treatment was recorded and evaluated. Proper design and execution of the stimulation treatment almost doubled the well injectivity index. Challenges, fluid selection, design criteria, field treatment, lessons learned, and results of the acid treatments were discussed in this paper.
机译:具有低渗透性的白云石形成的酸处理不同于施加的方解石岩石。与石灰石酸化不同,其中HCl以快速反应速率与石灰石反应以产生可溶于水的反应产物。在一些情况下,使用常规15wt%HCl酸的低渗透性,不能有效地改善了白云石形成的重点。此外,不能拆除由于钻井或工作组运营引起的形成损坏。因此,治疗含白云石进行注射的过程可以考虑酸刺激的严重问题。白云石酸化的挑战是优化损伤去除,同时用虫洞发生最大化岩石渗透性。井DW-4钻井并完成了水平开孔废水处理井,用于在Al-Khafji领域的偏离岸上油井的过量水产。这井用于处理未受作用的共生水,其由于砂堵塞和油含量液滴而随着时间的推移而显示出的喷射率。由于不考虑待使用的白云石反应速率和使用的化学体积,通过低成功速率进行几种酸刺激处理。进行了一个简单的先前治疗方法,以选择最佳的化学配方和治疗体积,以进行注射性改善。由于采用最佳处理量进行新的化学品配方,获得了与形成损伤的良好注射性的重大改进。本文展示了新的设计方法,具有广泛的实地研究,以解决酸刺激的挑战和最佳未来经营实践。它包括相互溶剂的含量,然后是20wt%HCl的Bullhead阶段,具有增强剂,以加速与白云石岩石的化学反应。仔细设计的一系列处理流体培训液体以除去通过钻孔和注射液引起的形成损坏。记录和评估治疗的每个步骤之前和之后的再射性试验。适当的设计和执行刺激处理几乎加倍井的注射指数。本文讨论了挑战,流体选择,设计标准,现场处理,经验教训和酸治疗的结果。

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