首页> 外文会议>IADC/SPE Asia Pacific Drilling Technology Conference and Exhibition >Defining Downhole Contribution/Injection Profile in Multi-Zone Completion by Temperature and Spectral Noise Logging
【24h】

Defining Downhole Contribution/Injection Profile in Multi-Zone Completion by Temperature and Spectral Noise Logging

机译:通过温度和光谱噪声测井定义多区域完成中的井下贡献/注射轮廓

获取原文

摘要

Success towards waterflood optimization requires the accessibility of downhole contribution and injection,challenging on the conventional cased-hole multi-zone completion where contribution and injection are gathering through sliding sleeve.This paper will describe the success in defining flow profile behind tubing by utilizing Temperature and Spectral Noise Logging.With response in frequency and noise power when fluid flowing through completion accessories,perforation tunnels and porous media,fluid entry points for producer and water departure point can be located by noise logging.Additionally,conventional temperature logging can usually define degree of intake and outflow along with change in fluid phase as a result of change in temperature.In combination of these implications,downhole flow contribution and injection profile can certainly be determined even though fluid moving in and out through production tubing and casing.Regarding pilot field implemtation in Sirikit field,two multi-zone-completed candidates have been selected,operations were carried-out for producer and injector according to the programs individually designed including logging across perforation intervals and station stops for multi-rate flow,transient and shut-in periods.Longer well stabilization is necessary for injector.In addition to production/injection logging interpretation by incorporating pressure,temperature,density and spinner data,the temperature simulation model is generated to determine downhole flowing/injecting contribution with parameters acquired during logging,for example,pressure and temperature.The other reservoir and fluid properties,e.g.permeability,thickness,hydrocarbon saturation,skin,heat conductivity and capacity have been analog based on available data from neighboring areas.Therefore,the historical data on production and injection including nearby well performance may be crucial to define necessary input to the model.In association with the interpretation of noise logging which is utilized in locating contributing/injecting zones,the interpretation strongly relies on acquired temperature data and outputs of temperature simulation model to match with measured temperature profile.However,limitations have been documented when dealing with multi-phase flow,especially in low flow rate condition – considered 5 BPD as a threshold.Sensitivity run with associated paramenters in the interpretation can significantly reduce the number of uncertainties to match with measured temperature profile.Temperature and Spectral Noise Logging to provide input to temperature model can definitely help accessing downhole injection profile for the injector by taking benefit of one phase injecting and having contrast between injecting fluid and geothermal temperatures.This application can significantly improve the waterflood performance and optimization particularly in high vertical heterogeneous reservoirs – thief zones can be identified and shut-off consequently.However,defining downhole contribution for low-rate oil wells producing from multi-layered depleted reservoirs especially in undersaturated condition is still a challenge.
机译:对水驱优化成功需要的井下贡献,并注入可访问性,对传统的套管井多段完成其中的贡献和注射是通过滑动sleeve.This纸收集挑战将通过利用温度说明了在定义后面管道流量分布的成功,频谱噪声测井。在频率和噪声功率响应时,当流体流过完成附件时,穿孔隧道和多孔介质,生产者和水出发点的流体入口点可以通过噪声测井定位。作者,传统的温度测井通常可以定义程度作为温度变化的结果,摄入和流出随着流体阶段的变化。在这些影响的组合中,即使通过生产管道和壳体进出流体,可以确定井下流动贡献和注射曲线肯定可以确定。还可以确定通过生产管和壳体进出。防止先导场植入在Sirikit字段中,两个MULT已经选择了I区已完成的候选人,根据单独设计的程序,为生产者和注射器进行操作,包括横跨穿孔间隔和站的测井,用于多速率流动,瞬态和关闭时段。龙头稳定注射器所需的必要。除了通过掺入压力,温度,密度和旋转器数据的生产/注射测井解释,产生温度仿真模型以确定测井期间获得的参数的井下流动/注入贡献,例如压力和温度。其他贮存器和流体性质,eGereagility,厚度,烃饱和度,皮肤,导热性和容量是基于来自邻近地区的可用数据的类似数据。因此,包括附近的生产和注射的历史数据可能是至关重要的输入到模型。在噪声释放的解释中的关联在定位有助于/注入区域的ogging,解释强烈依赖于获得的温度数据和温度模拟模型的输出,以与测量的温度谱匹配。然而,在处理多相流时,尤其是低流量,已经记录了限制率的条件 - 考虑5 BPD与在解释相关联paramenters一个threshold.Sensitivity运行可以显著减少不确定性的数量以匹配测量的温度和profile.Temperature频谱噪声记录到提供输入到温度模型绝对可以帮助访问井下注入剖面通过利用一个相位注射和注射流体和地热温度之间具有对比的益处来注射器。本申请可以显着提高水翅片性能和优化,特别是在高垂直的异构水库 - 可以识别和关闭。然而,可以识别和关闭。然而,可以识别和关闭。然而, D.从多层耗尽储层生产的低速油井的井下贡献,特别是在不饱和的条件下仍然是一个挑战。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号