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Coiled-Tubing-Conveyed Perforating for High-Pressure/High-Temperature Environment in Mexico Marine

机译:墨西哥海洋海军陆战队海军陆战队的高压/高温环境卷绕输送的穿孔

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In the Bay of Campeche, Mexico Marine operators have recently commenced the development of their high pressure, high temperature (HPHT) oil and gas fields in order to meet the high demand. These new developments present tough conditions for all aspects of well drilling and completion activities. They are particularly challenging for performing well intervention, which have driven operators, manufacturing and service companies to develop innovative strategies for servicing these fields. For HPHT well developments, electric line conveyed guns is the most common technique employed to perforate wells in the area, whether dynamic or static conditions. Nevertheless, coiled tubing (CT) deployed perforating has been recently employed as a reliable option in the following cases: ?Electric line is not a technically suitable option due to the limited magnitude of under-balance at which it can safely operate. ?Drag and buoyancy forces encountered in the wellbore are close to the operational limits of the cable. ?Wellbore tortuosity, tubular restrictions and well configuration render electric line unable to access perforation target depth. Initially, this paper discusses the workflow for performing technical analysis to develop safe and economical CT conveyed perforating operations for HPHT wells in offshore Mexico, which considers CT string design, surface equipment, well control equipment and associated downhole tools. It then presents case histories and lessons learned. And finally, provides conclusions and recommendations from the experiences gained for performing HPHT CT deployed perforating activities in Mexico Marine.
机译:在坎佩切湾,墨西哥海洋运营商最近开始开发其高压,高温(HPHT)油和天然气场,以满足高需求。这些新的发展对钻井和完成活动的各个方面来说都是艰难的条件。他们对执行良好的干预尤其具有挑战性,这些干预具有驱动的运营商,制造和服务公司,以制定用于维修这些领域的创新策略。对于HPHT井开发,电线输送​​枪是在该地区穿孔井中的最常用技术,无论是动态还是静态条件。然而,卷绕管(CT)展开穿孔已在以下情况下作为可靠的选择:电线不是技术上合适的选择,因为它可以安全地操作的下部的有限量。 ?井筒中遇到的阻力和浮力力靠近电缆的操作限制。 ?井筒曲折,管状限制和良好的配置渲染电线无法进入穿孔目标深度。最初,本文讨论了执行技术分析的工作流程,以开发安全和经济的CT在海上墨西哥的HPHT井中传送的穿孔操作,这考虑了CT字符串设计,表面设备,井控制设备和相关的井下工具。然后它呈现出案例历史和经验教训。最后,提供了在墨西哥海洋中表演HPHT CT部署的穿孔活动的经验提供结论和建议。

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