Flow Profiling Using Fiber Optics in a Horizontal Steam Injector with Liner-Deployed Flow Control Devices

Mohammad Javaheri, M. Tran, R. Buell, T. Gorham, J. Munoz, J. Sims, Stephen Rivas
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引用次数: 2

Abstract

Horizontal steam injectors can improve the efficiency of thermal operations relative to vertical injectors. However, effective in-well and reservoir surveillance is needed to understand steam conformance. Uniform steam chest development improves steam-oil-ratio (SOR) in continuous steam injection and accelerates recovery in cyclic steam injection. Conformance of the injected steam can be achieved by flow control devices (FCD) deployed on either tubing or liner. A new liner-deployed FCD was used in a horizontal steam injector in the Kern River field. The liner-deployed FCD is intended to replace the tubing-deployed FCDs while reducing capital costs, surveillance costs, and well intervention costs for conformance control. Fiber optics was used for surveillance, which is the most promising method in horizontal steam injectors considering reliability, accuracy, and cost. Fiber optic data enables monitoring the performance of liner-deployed FCDs as well as estimating the flow profile along the lateral length. Multi-mode Distributed Temperature Sensing (DTS) optical fibers and single-mode Distributed Acoustic Sensing (DAS) optical fibers were installed in the well for these objectives. Algorithms for interpreting DTS were improved to include a new technique, Shape Language Modeling (SLM), and a probabilistic approach. The configuration of the FCDs was changed during a well intervention, and it was monitored by DTS and DAS. Data from both DTS and DAS confirms the open/closed position of the sliding sleeve of FCDs initially and after the intervention. The probabilistic estimates of steam outflow in several FCD configurations match well with the theoretical outflow that is expected from the critical flow of steam through chokes installed in the FCDs.
利用光纤在带尾管式流量控制装置的水平蒸汽注入器中进行流动分析
相对于垂直注汽器,水平注汽器可以提高热作业效率。然而,需要有效的井内和储层监测来了解蒸汽的一致性。均匀蒸汽箱的开发提高了连续注汽的汽油比,加快了循环注汽的采收率。注入蒸汽的一致性可以通过安装在油管或尾管上的流量控制装置(FCD)来实现。在Kern River油田的水平蒸汽注入器中使用了一种新型尾管式FCD。尾管部署的FCD旨在取代油管部署的FCD,同时降低资本成本、监控成本和井眼干预成本。从可靠性、准确性和成本等方面考虑,光纤监控是水平井注汽器最有前途的监控手段。光纤数据可以监测尾管部署的fcd的性能,并估计沿横向长度的流动曲线。为了实现这些目标,井中安装了多模分布式温度传感(DTS)光纤和单模分布式声学传感(DAS)光纤。对DTS的解释算法进行了改进,包括一种新的技术,形状语言建模(SLM)和概率方法。在修井期间,fcd的配置会发生变化,并由DTS和DAS进行监测。DTS和DAS的数据均确认了fcd滑套在干预作业初期和之后的开启/关闭位置。几种FCD配置中蒸汽流出量的概率估计与通过安装在FCD中的扼流圈的蒸汽临界流量所期望的理论流出量吻合得很好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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