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首页> 外文期刊>The Saudi Aramco journal of technology >Lessons Learned from”In-well” Fiber Optic DAS/DTS Deployment
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Lessons Learned from”In-well” Fiber Optic DAS/DTS Deployment

机译:从“井中”光纤DAS / DTS部署的经验教训

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Fiber optic sensing technology has gradually become one of the pervasive tools in the monitoring and surveillance toolkit for reservoir and production engineers.Traditionally,sensing with fiber optic technology in the form of distributed acoustic sensing(DAS)or distributed temperature sensing(DTS),and most recently,distributed strain sensing and distributed chemical sensing,were done with the fiber being permanently clamped either behind the casing or production tubing.Clamping the fiber behind the tubing or casing is sometimes beleaguered with operational challenges that often lead to rendering the fiber partially damaged or inoperable.The emergence of the composite carbon rod system that can be easily deployed in and out of a well,similar to wireline logging,has made it possible to sense any well without prior fiber optic installation.In this article,we present the lessons learned from the first well where we deployed in-well fiber optic DAS/DTS.The use of DAS/DTS was done in a few vertical oil producer wells and water injector wells without prior fiber optic installation.The key objectives of the tests were to:(1)investigate the well integrity across the entire length of each well,(2)assess the production and injection flow profile across the perforations and behind casing,which to now,was not possible with a conventional production logging tool(PLT),and(3)investigate the possibility of using the combination of a distributed acoustic survey and a distributed temperature survey for quantitative production flow analysis.This article reviews the complete design and implementation of the in-well fiber optic deployment,field operational issues,analyses,and interpretation of the sensing results.The combination of DAS/DTS data showed no well integrity related issues.The sensing data surprisingly pinpointed a few geological features such as cooling shallow aquifers that until now had not been noticed.The combination of different pulse widths during shut-in and the production and injection cycles helped to refine the resolution of the flow profile from the Production and injection zones.
机译:光纤传感技术逐渐成为水库和生产工程师监控和监视工具包中的普遍工具之一。,以分布式声学传感(DAS)或分布式温度传感(DTS)形式的光纤技术感测,以及最近,最近,分布式应变感测和分布式化学传感器是用纤维永久夹紧的纤维在壳体或生产管后面完成。夹层后面的纤维有时会触及操作挑战,这些挑战通常导致呈现纤维部分损坏的纤维或者无法操作。可以容易地部署的复合碳棒系统的出现,类似于有线测井,使得可以在没有先前的光纤安装的情况下感测任何良好的良好。在本文中,我们介绍了课程从我们部署在井下光学DAS / DTS中的第一井中了解到。使用DAS / DTS的使用是在几文中完成的没有先前的光纤安装的高音发油机井和水喷射器井。测试的关键目标是:(1)研究每个孔的整个长度的井完整性,(2)评估生产和注射流程与现在,目前常规生产测井工具(PLT)是不可能的穿孔和壳体后面,(3)研究了使用分布式声学调查和分布式温度调查进行定量生产流程分析的组合的可能性。本文文章审查了井下光纤部署,现场操作问题,分析和传感结果的完整设计和实施。DAS / DTS数据的组合显示了不完整的相关问题。传感数据令人惊讶地发现了一些诸如冷却浅含水层的地质特征,直到现在尚未被注意到。关闭期间不同脉冲宽度的组合和产品注射循环有助于优化生产和注射区域的流动轮廓的分辨率。

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