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FIRST SUB-SEA DST WELL TEST WITH ESP IN INDONESIA

机译:第一次海洋DST在印度尼西亚使用ESP

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The application of Electric Submersible Pump Drillstem Testing (ESP DST) in the Ande-Ande Lumut-3X (AAL-3X) well confirmed the AAL Oil Discovery and also resolved uncertainties from the previous wells.An ESP DST system was selected for the AAL-3X tests with prior knowledge from the previous well,i.e.the well would probably not flow naturally due to being heavy (heavy oil with or without water) and lacking solution gas (low gas liquid ratio -^sGLR). Several other testing options were considered,i.e.conventional Nitrogen Lift via Coil Tubing; Hydraulic Jet Pumping and other artificial lift methods.However,these options were prohibitively challenging from both logistical and pressure transient test aspects.Although ESP DST was finally selected,many challenges remained as this ESP DST would be the first test in Indonesia on a sub-sea environment; i.e.on a floater (semi-submersible rig).With the current tight rig market,the test string design would need to be suited to the rig.These were the underlying challenges. With an ESP at the bottom of the string,annulus pressure changes would have to be minimized to protect the electric cable from damage.A simplified tool string was adopted instead of a conventional DST string.The packer required a feed-thru to pass the ESP cable through it and still maintain the seal between the annulus and the test string.An ESP Hydraulic Packer was chosen for this purpose.Two joints of MeshRite screen underneath the ESP were installed to reduce any sand problems during testing.The ESP pump was equipped with real time sensors to monitor the pump intake pressure. BOP Can for the ESP cable was used.This system would allow unlatching of the DST string from the surface equipment in emergency situations and allow latching back to continue the test or kill the well.The surface equipment was simplified by the omission of the separator and addition of one atmospheric tank.This was done because the gas volume was minor; the liquid rate was expected to be low; and the oil had to be mixed with diesel to achieve efficient burning. The tests were successful.Each test consisted of an initial flow,an initial surface shut-in,a 24 hour main flow and a 36 hour final downhole shut-in.The 1st zone tested 500 BOPD with 0% water cut in the main flow.The 2nd zone flowed 1200 BOPD with 0% water cut in the main flow period.The pressure data were good.
机译:电动潜水泵钻机测试(ESP DST)在Ande-Ande Lumut-3x(AAL-3X)中良好证实了AAL OIL发现,并解决了来自上一个井的不确定性。选择ESP DST系统为AAL - 3x测试与前一孔的先前知识,Iethe井可能不会自然流动,因为重(重油有或没有水)并且缺乏溶液气体(低气液比 - ^ SGLR)。考虑了几种其他测试选项,即通过线圈管道进行维持氮升降;液压喷射泵和其他人工升降方法。然而,这些选项从后勤和压力瞬态测试方面都受到挑战。虽然ESP DST终于选择了,但仍然存在许多挑战,因为这款ESP DST将是印度尼西亚的第一次测试海环境;即,一个浮动(半潜式钻机)。对于目前的紧密钻机市场,测试弦设计需要适合于钻机。这些是潜在的挑战。在弦底部的ESP中,必须最小化环压力变化以保护电缆免受损伤。采用简化的刀具串而不是传统的DST字符串.PLACER需要馈线以通过ESP电缆通过它并仍然保持环形和测试字符串之间的密封。ESP液压包装机被选择为此目的。在ESP下面的Meshrite屏幕的关节安装以减少测试期间的任何沙子问题。ESP泵配备实时传感器监控泵的进气压力。使用BOP可以用于ESP电缆。该系统将允许在紧急情况下从表面设备解锁,并允许锁定继续测试或杀死井。通过省略分离器简化了表面设备加入一个大气压。这是因为气体体积轻微;液体率预计将低;该油必须与柴油混合,以实现有效的燃烧。测试成功.ECTEACH由初始流量,初始表面关闭,24小时主流和36小时的最终井下关闭。第1区测试了500个BOPD,在主流中切割0%水切口第二区流动1200个BOPD,在主流量期间用0%的水切割。压力数据很好。

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