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Getting Past the Deepest Barrier Using Plasma Based Punctures: A Case Study on the Mature Panna Field, Western Offshore, India

机译:使用基于血浆的穿刺来越来越最深的障碍:印度海上西海岸成熟帕纳田的案例研究

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Panna field is located in the western offshore region of India and produces oil and gas from Middle Eocene and Early Oligocene Bassein limestone. Production is taken mostly through 3 " or 4 " tubing through a packer set in 7″ liner. The Panna-Mukta-Tapti Joint Venture (PMT JV) took up a plan to revive wells addressing well integrity issues and limitations associated with old completion jewelry for increasing the production. Work-over campaign was planned for four wells on PB and three wells on PC platform to enhance production. The plan was to cut and retrieve the old completion and tubing above the 7″ permanent packer and install improved completion, having facilities of Permanent Down Hole Gauges (PDHG), Gas Lift Mandrel (GLM) and Chemical Injection Mandrel (CIM) through an additional packer set in 9-5/8″ casing. In line with two barrier philosophy, two plugs were set inside the production tubing, one at TRSSV (shallow-set) and another one below the production packer (deep-set). The plug below the production packer doubled-up to also hold back the workover fluid, which may have hampered the productivity of an already sub-hydrostatic reservoir, if losses occurred. However, at the end of workover operations, the retrieval of this deep set plug could not be done even after various attempts and spending valuable rig time. This problem was faced with three out of the first four wells, which proved to be a challenge and forced the team to devise a new strategy for remaining wells. At this point, an ingenious solution was devised to employ Plasma Based Punctures (PBP) to puncture the tubing in the limited space between the packer and the deep set plug to kick back the wells into production. Rig based PBP operations were carried out on two PC wells and Rig less PBP operations were carried out on three PB wells to get them online post work over operation. This resulted in saving several hours of rig time as the deep set plugs could not be retrieved in the conventional planned slick line operations. This paper intends to highlight the challenges faced, and how PBP proved to be the optimum solution, by simplifying operations and ensuring the timely delivery of production. The PBP operations proved viable through savings on energy, resources, time and cost associated with work-over jobs. The potential savings were roughly 780,000 bbls of oil which were significant for the aging asset. It is therefore, a potent alternative to other costly solutions in a scenario that often fails to deliver objectives, as happened in this campaign.
机译:Panna Field位于印度的西海岸地区,生产来自中期和早期的少茂氨基林石灰石的石油和天然气。生产主要通过3“或4”管,通过封装器设置在7“衬里。 Panna-Mukta-Tapti合资企业(PMT JV)恢复了恢复井的计划,解决了与旧的完工珠宝相关的良好诚信问题和局限性,以增加生产。在PB上的四个井和三个井上的PC平台上计划了解工作运动,以加强生产。该计划是切割和检索7“永久包装机上方的旧完成和管道,并安装改进的完成,通过额外的额外安装永久下孔仪(PDHG),气体升降芯片(GLM)和化学喷射心轴(CIM)的设施。包装器设置在9-5 / 8“套管中。符合两个屏障哲学,在生产管内设置两个插头,一个在TRSSV(浅设施)和另一个下方的生产封隔器(深套装)内。在生产封隔器下方的插头加倍,也可以阻止该过程流体,这可能阻碍了已经存在的次静压水库的生产率,如果发生损失。然而,在工作组运营结束时,即使在各种尝试和花费有价值的钻机时间之后,也无法进行此深度设置插头的检索。这个问题面临着前四个井中的三个,这被证明是一个挑战,迫使球队制定剩余井的新战略。此时,设计了一种巧妙的解决方案,以使用基于等离子体的穿刺(PBP)来穿刺封隔器和深套塞之间的有限空间的管,以将井踢回生产。基于钻机的PBP操作是在两台PC井上进行的,并且在三个PB井上进行了较少的PBP操作,以使其在线职位过度运行。这导致在传统计划的光滑线操作中无法检索深度设置插头,从而节省几个小时的钻机时间。本文旨在突出面临的挑战,通过简化运营和确保及时交付生产,PBP如何被证明是最佳解决方案。通过节省与工作就业人员相关的能源,资源,时间和成本,PBP运营证明可行。潜在的节省大约是780,000个石油,这对老化资产具有重要意义。因此,如在这场广告系列中发生的情况下,通常无法提供目标的场景中的其他昂贵解决方案的有效替代方案。

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