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A Structured Approach to Solving Completion Challenges with DownholeFiber Optic Monitoring

机译:用软光学监测解决完工挑战的结构化方法

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The capabilities of permanently installed fiber optic cable to monitor the distribution of slurry betweenperforation clusters in a hydraulic fracturing treatment are now well understood throughout the industry.The distributed measurements from the fiber optic cable gives the ability to test different completion designsto evaluate which design can promote a more uniform flow distribution between perforation clusters.Over the past few years,the cost of utilizing a permanently installed fiber optic cable has decreased.However,the investment still adds to the total development cost of the pad,meaning that the knowledgegained from fiber optic measurements need to be maximized in order to realize the value added and to lowercosts on future developments.For this reason,it is imperative to understand the challenges to be solvedby implementing this technology,and to create a structured design of experiments suited to solve thesechallenges.This paper presents some recent work performed in the southern Delaware Basin utilizing fiber optic-based distributed acoustic sensing data.The primary objectives of this project were to improve the fluiddistribution between clusters and to test the ability to keep the improved fluid distribution while extendingthe treatment interval length.The variables changed between experiments to achieve these goals will bediscussed along with their corresponding results.It will be shown how pairing the fiber optic measurementswith a structured design of experiments increased the knowledge gained from the fiber optic project.
机译:永久安装的光纤电缆的功能,以监测浆料betweenperforation簇在水力压裂处理的分布现在很好地理解整个industry.The分布从光纤电缆测量给出的能力测试不同完成designsto评估其设计能促进穿孔clusters.Over之间的更均匀的流动分布在过去几年中,利用一个固定安装的光纤光缆具有decreased.However的成本,投资仍然增加了衬垫的总开发费用,这意味着从光纤的knowledgegained测量需要,以实现增值,并就未来的developments.For为此lowercosts最大化,就必须了解所面临的挑战是solvedby实施这一技术,并创造适合解决thesechallenges实验结构化设计。本文介绍了一些近期的工作中,从而进行uthern特拉华盆地利用光纤为基础的分布式声感测该项目的data.The主要目标是改善集群之间的fluiddistribution并测试,以保持改善的流体分布,而extendingthe治疗间隔length.The变量实验之间改变以实现的能力这些目标将与它们对应的results.It沿bediscussed将展示如何配对光纤measurementswith的实验结构化设计增加了从光纤项目获得的知识。

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