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Research and Application of Bridge Eccentric Zonal Water Injection Technology with Continuous Adjustment and Surface Monitoring

机译:桥梁偏心区注水技术与连续调整和表面监测研究与应用

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Bridge eccentric zonal water injection is a mainly technology for zonal water injection.However,there are some disadvantages of existing bridge eccentric zonal water injection technologies,such as fixed water nozzle size requires multiple fishing operations,multiple tests and nozzle replacements.In addition,whether the replacement of the nozzle is appropriate depends on the experience of the operator.The disadvantages also include low accuracy of downhole flowrate test for each layer,high difficulty of sealing test for packers,low operational efficiency,etc.This paper proposes a bridge eccentric zonal water injection technology with continuous adjustment and surface monitoring.This new technology includes continuously adjustable downhole regulator,bridge eccentric water distributor,integrated measurement and adjustment technology of downhole water injection rate and electrically controlled sealing test for packers.The continuous adjustable downhole regulator had been designed with a brand new water nozzle construction.The water nozzle is composed of two parts.The outer nozzle is fixed.The inner nozzle can move up and down in order to adjust water injection rate continuously.In this way,water distribution accuracy can be improved.The regulator can be installed in the side pocket of water distributor.It also can be fished out in order to replace it in some conditions.Bridge eccentric water distributor adopts the new design of right-angled bridge channel,which will effectively eliminate the influence of inter-layer interference and benefit sealing tests for packers.With integrated measurement and adjustment technology,downhole water injection rate for each layer can be measured and adjusted by using a test instrument that can be run in hole via a cable and docked to downhole regulator.The entire measurement and adjustment process can be controlled from surface via the same cable.This technology can obtain injection rate,pressure and temperature of each layer online.Packers'sealing status can be tested by using electrically controlled sealing test.The test instrument runs in hole by using a cable.Furthermore,the setting and unsealing of the rubber sleeve in the seal test instrument can be controlled from the ground.Test result also can be monitored from the ground through cable.Until recently,this technology had been applied in 612 wells with maximum depth 2250m,maximum deviation 43.4°,up to 5 injection layers.Compared with existing technology,water distribution accuracy of a single well is improved by 22 percentage points.Besides,the time cost of flowrate measurement,adjustment and packer sealing test is shortened from 3-5 days to 4-6 hours.The efficiency is significantly improved.The result of research provides a brand new zonal water injection technology with continuous adjustment for oilfield development and management home and abroad.This technology has broad application prospects.
机译:桥梁偏心局部注水是一个主要用于区内注水的技术。但是,现有的桥梁偏心区注水技术有一些缺点,如固定水喷嘴尺寸需要多次钓鱼操作,多次测试和喷嘴替代。另外替换喷嘴是合适的,取决于操作员的经验。缺点还包括每个层的井下流量试验的低精度,密封试验的较高难度,低运行效率等。这篇论文提出了一座桥梁偏心区具有连续调节和表面监测的注水技术。这项新技术包括不断调节的井下调节器,桥梁偏心水分配器,井下注水速率的集成测量和调节技术,以及封装机的电控密封试验。设计了连续可调节的井下调节器与BR.和新的水喷嘴建筑。水喷嘴由两部分组成。外喷嘴固定。内喷嘴可以上下移动,以便连续调节注水速率。这种方式,可以改善水分配精度。稳压器可以安装在水分配器的侧袋中。也可以捕捞出来,以便在某些条件下更换它。桥梁偏心水分配器采用右侧角度桥通道的新设计,从而有效地消除互连的影响 - 层的干扰和益处密封试验。通过综合测量和调整技术,可以通过使用可以通过电缆运行并停靠在井下调节器的测试仪器来测量和调整每个层的井下水注入速率。可以通过相同的电缆从表面控制整个测量和调整过程。本技术可以获得每层的注射速率,压力和温度.PAC可以通过使用电控密封试验来测试Kers的状态。测试仪器通过使用电缆在孔中运行。果实,密封试验仪中的橡胶套筒的设置和未密封也可以从地面控制可以通过电缆通过电缆监控。近期,这项技术已应用于612孔,最大深度为2250米,最大偏差43.4°,最多5个注射层。有现有技术,单个井的水分配精度得到改善通过22个百分点。基于3-5天至4-6小时的流量测量,调整和包装机密封试验的时间成本从3-5天缩短。效率显着改善。研究结果提供了全新的带入水注射技术持续调整油田开发和国内外管理。本科技具有广阔的应用前景。

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