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页岩气生产动态井下无线监测系统研制与应用
引用本文:李枝林,韩雄,庞东晓,许期聪,岳明,陈丽萍,刘欣,干建华.页岩气生产动态井下无线监测系统研制与应用[J].钻采工艺,2022,45(2):143-148.
作者姓名:李枝林  韩雄  庞东晓  许期聪  岳明  陈丽萍  刘欣  干建华
作者单位:1中国石油川庆钻探公司钻采工程技术研究院2国家能源高含硫气藏开采研发中心3中国石油川庆钻探公司页岩气项目经理部4中国石油天然气股份公司西南油气田分公司勘探事业部
基金项目:中国石油川庆钻探工程有限公司项目“页岩气生产动态井下监测系统开发”(编号:CQ2020B-48-5-Z3)。
摘    要:目前页岩气生产过程中井下动态资料的获取途径主要采用生产测井或钢丝下压力计试井等方式,其存在井口装备多、工序复杂、井下数据获取不及时、监测覆盖时间短等不足,为此,开发了一套页岩气井生产动态井下无线监测系统。该系统采用“井下数据无线采集”+“井口物联网终端”+“基地数据中心”的技术架构,将井下数据无线采集工具随油管一起送到储层中,采集井筒中流体温度、压力、流量及含水率等生产动态数据,并直接通过电磁波发射器上传到地面,地面天线接收后再由井口物联网传输到基地监测中心,实现在基地即可远程实时观察页岩气井的井下生产动态情况,根据生产需要及时调整井口生产制度,以便提升生产井的产能。本系统适用井深3500m左右;在设定数据量为4组/d(可调)时,工作时长可达2~3年。系统在威204H36-6井及威202H22-7井进行了现场应用,获取的生产动态数据准确、及时。其中,威204H36-6井根据监控数据开展了控压调产,明显减缓了地层能量衰减速度,提高采收率2~3%;威202H22-7井在邻井的压裂液进入井筒时进行了及时的报警,防止了气井被压裂液淹死情况的发生。页岩气井生产动态井下无线监测系统的开发实现了页岩气井在生产阶段的长期实时监测功能,应用效果良好,具有推广应用的良好前景。

关 键 词:页岩气井  井下  生产动态  实时监测  无线传输  

Development and Application of Dynamic Downhole Wireless Monitoring System for Shale Gas Production Performance
LI Zhilin,HAN Xiong,PANG Dongxiao,XU Qicong,YUE Ming,CHEN Liping,LIU Xin,GAN Jianhua.Development and Application of Dynamic Downhole Wireless Monitoring System for Shale Gas Production Performance[J].Drilling & Production Technology,2022,45(2):143-148.
Authors:LI Zhilin  HAN Xiong  PANG Dongxiao  XU Qicong  YUE Ming  CHEN Liping  LIU Xin  GAN Jianhua
Affiliation:1.CCDC Drilling & Production Technology Research Institute,Guanghan,Sichuan 618300,China; 2. National Energy High Sulfur Gas Reservoir Exploition Research and Development Center,Guanghan,Sichuan 618300,China; 3. CCDC Shale Gas Project Management Department,Chendu,Sichuan 610000,China; 4.Exploration Division,PetroChina Southwest Oil& Gas Field Co.. Chendu, Sichuan 610000,China
Abstract:The downholedynamic data acquisition for shale gas production mainly adopts such means as production logging or well testing with pressure gauge running by steel wire, which is with many shortcomings, for instance, much more wellhead equipment, complicated process, not timely acquisition of downhole data and short monitoring time. Therefore, adynamic downhole wireless monitoring system for shale gas production has been developed. The system uses a technical architecture of wireless downhole data acquisition plus Wellhead Iot terminal and base data centerto deliver wireless downhole data acquisition tools with tubing to the reservoir to collect such production dynamic data as wellbore fluid temperature, pressure, flow rate and water cut. The gathered data can be directly uploaded to the surface through electromagnetic wave transmitter, and then transmitted to the monitoring center of the base by the wellhead Internet of things after receiving by the ground antenna, realizing remote real-time observation of shale gas well performance from the center base, so that the wellhead production schedule can be adjusted according to the production requirements and further to improve well productivity. The system is suitable for 3500m well depth. When the amount of data is set to 4 groups per day (adjustable), the working time can reach 2 to 3 years. The system has been field trailed in Well Wei 204H36-6 and Well Wei 202H22-7 with accurately and timely obtained the dynamic production data. According to the monitoring data,Well 204H36-6has been performed pressure control and production adjustment, which significantly slowed down the rate of formation energy attenuation and increased the oil recovery by2% to 3%, Well 202H22-7has given a timely alarm when the fracturing fluid from the adjacent well entered the wellbore, preventing the gas well from drowning by fracturing fluid. The development of downhole wireless monitoring system for shale gas well production has realized the long-term real-time monitoring for shale gas well during the production stage and with a good application effect, showing a great prospect of popularization and application.
Keywords:shale gaswell  downhole  production performance  real-timemonitoring  wireless transmission  
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