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Stimulating Khuff Gas Wells with Smart Fluid Placement

机译:用智能液体放置刺激Khuff气井

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The objective of many matrix acidizing treatments in the Khuff carbonate formations is to remove drilling damage and enhance productivity after the drilling process. Open hole and multilateral completed wells, present several challenges that prevent an optimum intervention with coiled tubing (CT). Traditional practices have been limited to spot stages of pre-flushes, acid, and diversion systems in front of the formation from toe to heel without proper control over the placement process.Using an innovative workflow, interpretation of distributed temperature surveys (DTS) responses, correlated with reservoir data, assists in selectively placing fluids, maximizing the contact of stimulation fluids with the targeted formation sections. Two field applications, in dual-lateral horizontal open hole gas producers, that demonstrate how to optimize a stimulation treatment as it occurs, were implemented in a field in the Kingdom of Saudi Arabia.In both cases, selective access to pay zones in each lateral was confirmed with DTS profiles. Following the pre-flush and the first acid pass, DTS measurements indicated acid effect over the permeable zones but also detected fluid movement towards non gas bearing thief zones. Foam and energized visco-elastic diverting acid fluids were used to divert acid to the target zones avoiding the lost of all stimulation fluids to the toe in one case and to the heel in the other well. After treatment, the gas production increased from zero to more than two times the expected rate in both wells.Understanding of the flow patterns as fluids are placed in the wellbore was possible. Changes to the fluid placement schedule during the job resulted in optimum acid coverage and efficient diversion confirmed by the downhole measurements. The identification of the thief zones was critical to avoid wasting fluids. This experience, the first ever gas wells in Middle East, represents an opportunity for un-locking production potential in similar gas developments.
机译:在Khuff碳酸盐形成中许多基质酸化处理的目的是去除钻孔损坏并在钻孔过程后提高生产率。开孔和多边完成的井,目前有几种挑战,防止用卷绕管(CT)进行最佳干预。传统的实践仅限于从脚趾到脚跟前面的冲洗,酸和转移系统的点阶段的阶段,而无需适当地控制放置过程。采用创新的工作流程,解释分布式温度调查(DTS)响应,与储存器数据相关联,有助于选择性地放置流体,最大化刺激流体与靶向形成部分的接触。在双横向水平开孔气体生产商中的两个现场应用,这些应用程序在沙特阿拉伯王国的一个领域中实施了如何优化刺激治疗。在这两种情况下,选择性地访问每个侧向的支付区域用DTS配置文件确认。在齐平和第一酸通过之后,DTS测量指示渗透区域上的酸效应,但也检测到朝向非气体轴承的流体运动。泡沫和通电的粘弹性转向酸流体用于将酸酸转移到目标区域中,避免在一个情况下丢失所有刺激流体到脚趾上并进入其他孔。在处理之后,气体产量从零度增加到井中的预期速率从零增加到超过两倍。随着流体放置在井筒中的流动模式中,可以进行流动模式。在作业期间对流体放置时间表的变化导致井下测量确认的最佳酸覆盖和有效的转移。避免浪费流体的识别是至关重要的。这种经验是中东的第一个煤气井,代表了在类似气体发展中的未锁定生产潜力的机会。

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