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Reviving the Production of a Dead Well by testing it with Hydraulic Jet Pump

机译:通过用液压喷射泵测试它来恢复良好的生死

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When the natural energy of a reservoir is not adequate to lift the wellbore fluid to the surface, it is necessary to use an artificial lift system that supplies the additional energy required to continue the exploitation of reservoirs. This paper presents a trial jet pump application in the dead well of a mature oil field. The well was completed with dual strings of size 2-3/8 in. in a 7 in. casing and was producing from two separate formations. Both formations, despite of having produced for a considerable amount of time, have high reservoir pressures at present. The upper formation being produced independently via short string was loaded up for almost three years, because the API and Gas Oil Ratio (GOR) from the formation were very low along with high water cut. The lower formation had a substantial amount of gas with no water cut and was producing at significant oil rates. However, the formation being produced through the long string did not flow after shutting in for a Bottom Hole Pressure (BHP) survey. The well was unloaded by reducing surface back pressure, but it exhibited slugging behavior and an increased oil API and therefore was abandoned. The test with hydraulic jet pump was justified by the need to revive production without a work-over. Thus, a jet pump was installed in the short string in a Sliding Side Door (SSD), and the short string was tested first with the long string being isolated. After the testing of short string independently, an SSD connected to the long string in the middle of two packers, was opened so that both formations can be produced from the same short string. Based on the results, a dead well was successfully revitalized with the cumulative production of 380 BPD i.e., an average of 100 BOPD and 280 BWPD, which was higher than the targeted production rates evaluated for this well. Apart from this, downhole pressure data was gathered with the objectives to observe the potential of reservoir and to assist the operator for making the decision of installing jet pump on the well with or without a worker-over. Nevertheless, this technique allowed the operator to install jet pump through slick-line and consequently saved the cost of a work-over. Hence, jet pump was found to be the most efficient Artificial Lift System (ALS) and the trial achieved more than the expected performance.
机译:当储层的自然能量不足以使井筒流体升到表面时,必须使用人工升降系统,这些升降系统提供继续储存器的剥削所需的额外能量。本文介绍了成熟油田的死井中试用喷射泵应用。井的双弦尺寸为2-3 / 8。在7英寸。套管并从两个单独的地层生产。尽管为相当多的时间制作,但两种形成都具有高储层压力。通过短弦独立生产的上部形成近三年,因为来自形成的API和瓦斯油比(GOR)与高水平相同。较低的形成具有大量的气体,没有水分,并以显着的油速生产。然而,通过长柱产生的形成在关闭底部孔压力(BHP)调查后没有流动。通过减少表面背压液卸下井,但它表现出缝隙行为和增加的油API,因此被遗弃。使用液压喷射泵的测试是通过无需重新运作的无需恢复生产。因此,喷射泵安装在滑动侧门(SSD)中的短柱中,并且首先用隔离的长串测试短串。在独立测试短串之后,打开了连接到两个包装器中间的长串的SSD,以便可以从相同的短串产生两个形成。基于结果,通过380 bpd的累积生产成功地恢复了死亡井,平均100个Bopd和280 bwpd,其高于此良好评估的目标生产率。除此之外,井下压力数据被聚集在一起,目标是观察水库的潜力,并帮助操作员作出决定在良好的情况下安装喷射泵,没有人员。尽管如此,这种技术允许操作员通过光滑线安装喷射泵,从而节省了工作的成本。因此,发现喷射泵是最有效的人工升力系统(ALS),并且试验比预期的性能相比。

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