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Successful Application of the Intelligent Inflow Tracers for Monitoring of Horizontal Wells on North Komsomolskoe Field

机译:智能流入跟踪器的成功应用于北Komsomolskoe田间水平井监测

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Most of the new oil fields in Western Siberia have unfavorable conditions for field development such as excessive gas cap presents, oil rims and active water aquifer. The North-Komsomolskoe oilfield is also characterized by poor consolidated sandstone and high viscous oil. Different types of reservoir completion (ICD, ACID, AICV) have been decided to trial test for this field in order to mitigate early water or gas breakthrough along the long horizontal well. During this trial testing of the optimum type of lower completion, the continuous well monitoring is required; clean-up efficiency estimation after drilling, quantitative estimation of inflow per compartment along the wellbore and localization of water or gas breakthrough. Traditional well logging methods like production logging cannot always be easily applied technically and be cost-effective for many surveys during well life. This article presents the result of using a novel technology based on chemical tracer for continuous well monitoring. Polymer matrix with chemical markers for oil and water have been integrated into different types of lower completion (ICD, AICD, Stand Along Screen) and run into the hole as a part of liner string. Technology of intelligent chemical tracers is used to monitor well performance over a long period of well life, which allows to obtain the following information: effectiveness of clean up operation after drilling, inflow per compartment and water/gas breakthrough localization zone. To confirm interpretation results based on chemical tracer, the traditional method (production logging) was used to measure inflow along the wellbore and compare with result from tracer survey.
机译:西伯利亚西部大部分的新油田对现场开发具有不利条件,如过多的气体帽,油轮辋和活性水含水层。 North-Komsomolskoe油田的特点还包括良好的阳极砂岩和高粘度油。不同类型的水库完成(ICD,酸,AICV)已经决定对该领域的试验试验,以便在长水平井中减轻早水或气体突破。在此试验期间,最佳类型的较低完成,需要连续良好的监测;钻孔后的清理效率估计,沿井筒钻井流入的定量估计和水或天然气突破的定位。传统的井测井方法,如生产记录,不能始终在技术上轻松应用,并且在井寿命期间的许多调查都具有成本效益。本文介绍了基于化学示踪剂使用新技术的结果,以进行连续良好的监测。具有用于油和水化学标记的聚合物基质已经集成为不同类型的较低完成(ICD,AICD,沿屏幕),并作为衬里串的一部分延伸到孔中。智能化学示踪剂技术用于监测长期井寿命的井性能,这允许获得以下信息:钻井后清理操作的有效性,每隔间流入和水/气体突破性区域。为了基于化学示踪剂确认解释结果,传统方法(生产测井)用于测量沿井筒的流入,并与跟踪调查结果进行比较。

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