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A new concentric zonal water injection technique for highly-deviated wells

机译:高偏井的同心分层注水新技术

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Existing eccentric zonal water injection techniques cannot meet the requirements of separated layer water injection, testing and adjustment in highly-deviated wells, because of their low fishing success rate of down-hole nozzles, low efficiency of connection between instruments and nozzles, and low precision of zonal flow rate test. A new concentric zonal water injection technique is proposed for highly-deviated wells. This technique adopts concentric testing and adjustment, i.e., the test instrument is concentrically connected with the down-hole regulator, with high success rate of connection. The down-hole regulator uses bridge-type channel to effectively eliminate inter-layer interference and thereby improving testing and adjustment efficiency. Water flow rate is adjusted with an eccentric valve, which features small loss in full-off state, small adjustment torque and easier water adjustment. This technique is functional for both collected flow test and non-collected flow test, so it is workable for low flow rate test. It can achieve packer seal test on line by cable, the status of seal balls can be monitored and all seal test operations can be completed in one trip. This technique can obtain flow rate, pressure, temperature and other parameters of any layer on line and automatic testing and adjustment of injection allocation rate, without fishing, significantly improving testing and adjustment efficiency. Until now, this technique has been tested in 11 wells (maximum well deviation of 55°), with tested flow rate error of less than 5%, and three-layer seal check and adjustment time of less than one day. Compared with the existing techniques, this new technique has advantages such as high testing and adjustment efficiency, high precision and low cost.
机译:现有的偏心分区注水技术由于井下喷嘴的捕捞成功率低,仪器与喷嘴之间的连接效率低,精度低而不能满足高偏井中分层注水,测试和调整的要求。区域流量测试。提出了一种新的同心分层注水技术,用于高井眼。该技术采用同心测试和调整,即测试仪器同井下调节器同心连接,连接成功率高。井下调节器采用桥式通道,有效消除层间干扰,从而提高测试和调整效率。水流量通过偏心阀进行调节,偏心阀在全开状态下损失小,调节扭矩小,水调节更容易。该技术对于收集流量测试和非收集流量测试均起作用,因此适用于低流量测试。它可以通过电缆在线完成封隔器密封测试,可以监视密封球的状态,一次完成所有密封测试操作。该技术可以在线获取任意层的流量,压力,温度等参数,自动进行喷油分配率的测试和调整,无需打捞,大大提高了测试和调整的效率。迄今为止,该技术已在11口井中进行了测试(最大井斜为55°),测试的流量误差小于5%,三层密封检查和调整时间少于一天。与现有技术相比,该新技术具有测试调整效率高,精度高,成本低等优点。

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