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Case History: New Horizons for Downhole Flow Measurements via Coiled Tubing Equipped with Real-Time Downhole Sensors at South Ghawar Field, Saudi Arabia

机译:案例历史:通过在沙特阿拉伯South Ghawar领域的实时井下传感器的滚筒流量测量新的视野。

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During the last 5 years, one of the most common matrix acidizing enhancement techniques used to improve zonal coverage in open hole or cased hole wells is conducting a distributed temperature survey (DTS) using coiled tubing (CT) equipped with fiber-optic and real-time downhole sensors during the preflush stage before the main stimulation treatment. This is used to identify high and low intake zones so the pumping schedule can be modified to selectively place diverters and acidizing fluids with a high degree of control. Once stimulation treatment has been completed, a final DTS analysis is performed to evaluate the zonal coverage and effectiveness of the diversion. Even though this technique has provided satisfactory results, alternative methods providing faster and more accurate understanding of flow distribution between the zones and laterals are needed, especially if there is limited temperature contrast between fluids and reservoir. Thus, an innovative coiled tubing real-time flow tool has been recently developed to monitor flow direction and fluid velocity. This measurement is based on direct measurement of the heat transfer from the sensors to the surrounding fluid using a calorimetric anemometry principle. The first worldwide use of this technology in a Saudi Aramco injector well showed this to be a viable new approach to downhole flow monitoring that can be used by itself or in conjunction with DTS, depending on the constraints of each individual intervention.
机译:在过去的5年中,用于改善开孔或套管孔井中的区域覆盖的最常见的基质酸化增强技术之一是使用配备有光纤和实际的卷绕管(CT)进行分布式温度测量(DTS)在主要刺激治疗前的预填充阶段的时间井下传感器。这用于识别高低摄入区,因此可以修饰泵送时间表以选择性地放置分流器并酸化具有高度控制的流体。一旦刺激处理完成,就会进行最终DTS分析以评估转移的区域覆盖率和有效性。尽管该技术提供了令人满意的结果,但需要提供更快,更准确地理解区域和横向之间的流动分布,特别是如果流体和储存器之间存在有限的温度对比度。因此,最近已经开发了一种创新的盘绕管实时流动工具来监测流动方向和流体速度。该测量基于使用量热性气动测压原理将从传感器的热传递到周围流体的热传递的直接测量。在沙特阿美进出机中的第一次使用这项技术的使用表明,这是一种可行的新方法,可以自身使用或与DTS一起使用,这取决于每个单独干预的约束。

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