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Wells’Water Cut Measurements with Limitations of Testing Facilities in the Field

机译:Wells'Water削减了局域网测试设施的局限性的测量

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The objective of this article is to demonstrate recent results of a water cut measurement campaign in the Karachaganak oil and gas condensate field.Historical,inaccurate well water cut assessment was due to the limitations of well test facilities which led to uncertainty in short-and long-term production forecasts.Several approaches were conducted to eliminate uncertainties in water cut measurements and to evaluate and define adequate tools to use for future water cut analysis.The use of a mobile sampling flow loop installed at the well head,where turbulent multiphase flow is guaranteed,was a safe and reliable approach to measure the water cut of the producing low and high productivity wells.Sampling and analyzing the fluid at the well site at various operating well head pressures,frequently and for long periods of time,resulted in better understanding of water cut dependence with changes in drawdown.In addition to the use of sampling on site,the optical sensor(OS)technology was a trial tested on two wells along with the sampling flow loop to confirm the accuracy of the technology.The existing test separators were not designed to handle high water rates;moreover,due to the complexity of the produced hydrocarbon,multiphase flowmeters are not able to accurately measure the correct fluid phase contribution and,as a result,inaccurately estimate phase rates.The OS tool demonstrated accurate real-time water cut readings in the liquid phase,when compared with the flow loop samples,as long as a turbulent flow is guaranteed during measurement.Thus,this technology can be considered as an accurate tool for water cut measurements.The possibility of temporary and permanent installation of the optical sensor tool at the well site or test lines is under evaluation.The current field development focuses on improved recovery from the oil rim which is above a weak aquifer.In the historically developed areas of the field this aquifer is separated from the hydrocarbons by impermeable shale and therefore water production has been minimal.Current and future development requires the drilling of new wells in areas not protected by barriers;this has led to a number of recent wells having a relatively early water breakthrough.
机译:本文的目的是展示最近在卡拉丘纳克石油和天然气凝析田中的水割测量活动的最新结果。逻辑,不准确的良好水分评估是由于井测试设施的局限性导致了短期和长期的不确定性-Term生产预测。进行了方法,消除了水削测量的不确定性,并评估了适用于用于未来的水切口分析的适用工具。在井头上安装了移动采样流量的使用,其中湍流多相流动保证,是一种安全可靠的方法来测量生产低和高生产率井的水的污水。采样和分析在各种操作井头压力的井场,经常和长时间,导致更好的理解依赖于绘图的变化的水切割。除了在现场采用采样,光学传感器(OS)技术是三国l在两个孔上测试,以及采样流环,以确认技术的准确性。现有的测试分离器不设计用于处理高水费;而且,由于所生产的烃的复杂性,多相流量计不能准确测量正确的流体相位贡献,结果是不准确的估计阶段率。OS工具在与流回流样本相比时表现出液相中的准确实时水切口读数,只要保证湍流期间测量。这项技术可以被认为是用于水切削测量的准确工具。在井场或测试线上的光学传感器工具的临时和永久安装的可能性在评估中。目前的现场发展侧重于改善的恢复较弱的含水层上方的油轮。在历史上发达的地区,这种含水层通过不透水的SH与碳氢化合物分开啤酒并因此的水资源是最小的。电流和未来的发展需要在不受障碍保护的地区钻探新井;这导致了一些近期水突破的近期井。

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