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Solid expandable tubular patching technique for high-temperature and high-pressure casing damaged wells

机译:固体高压膨胀套管修补技术在高温高压套管损坏井中的应用

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In view of the issue that casing patching by solid expandable tubular (SET) has a low success ratio in high temperature (HT) thermal recovery wells or high pressure (HP) water injection wells, four key techniques of SET were studied theoretically and experimentally, and the casing patching SET tool for the HT/HP wells was designed. The expandable tubular with post expansion mechanical properties reaching API N80 steel grade was developed. The loading plane angle of expandable connecting thread was optimized as ?9°. The sealing piece of inlaid welded copper and the cone coated with tungsten carbide were developed. Based on these researches, a prototype SET patching tool for HT/HP wells has been manufactured. The SET patching tool for HT/HP wells was manufactured. Laboratory experiments demonstrated that the expansion force of the patching tool was between 25 MPa and 32 MPa, the pressure resistance in three periods of alternating temperature load was over 15 MPa, the sealing capacity exceeded 35 MPa, all were up to the designed standard. The field tests in 45 wells in the Liaohe and Tuha oil fields demonstrated that this technique has good adaptability in casing patching in high temperature thermal recovery wells or high pressure water injection wells. After the patching operation, the water pressure 15 MPa was maintained for 30 minutes to test the tool's sealing performance, the pressure drop was less than 0.2 MPa, and the success ratio of one-time construction was 100%. After the casing patching, the oil wells production increase significantly and remarkable economic benefits are achieved.
机译:鉴于固态膨胀管(SET)套管修补在高温(HT)热采井或高压(HP)注水井中成功率低的问题,在理论和实验上研究了SET的四个关键技术,设计了用于HT / HP井的套管修补SET工具。开发出具有达到API N80钢级的膨胀后机械性能的可膨胀管。可膨胀连接螺纹的加载平面角度优化为99°。开发出镶嵌焊接铜的密封件和涂有碳化钨的锥体。基于这些研究,已经制造出用于HT / HP井的SET修补工具原型。制造用于HT / HP井的SET修补工具。实验室实验表明,修补工具的膨胀力在25 MPa至32 MPa之间,三个交变温度负荷下的耐压性均超过15 MPa,密封能力超过35 MPa,均达到设计标准。在辽河和吐哈油田45口井的现场测试表明,该技术对高温热采井或高压注水井的套管修补具有良好的适应性。修补操作后,保持15 MPa的水压30分钟以测试工具的密封性能,压降小于0.2 MPa,一次施工的成功率为100%。套管修补后,油井产量大幅度提高,经济效益显着。

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