集成压力激活阀与自动流入控制阀技术,最大限度地降低了在具有挑战性的井控条件下的部署风险

M. Abd el-Fattah, C. Nomme, Bjørnar Werswick
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引用次数: 0

摘要

在严重裂缝的碳酸盐岩储层中,井在低完井时往往会遭受严重的损失。为了避免意外返排,需要连续泵送。如果不这样做,将导致储层流体回流到完井管柱中,并可能到达地面,从而导致重大的井控风险。集成压力激活阀(PAV)与自动流入控制阀(AICV)提供了一种独特的井控风险管理解决方案,可以在这种具有挑战性的情况下安全部署下完井。PAV模块串联安装在屏幕和AICV外壳之间,将成为下部完井的一部分。在RIH期间,PAV-AICV系统保持关闭状态,确保没有流体从两个方向流过。一旦完井达到目标深度,其他压力激活完井工具被设置/测试,然后通过在油管上施加设计压力来触发PAV。当达到激活压力时,PAV开启,当压力释放时,PAV开启,通过AICV在油藏和油管之间建立流动通道。AICV-PAV集成系统的鉴定测试涉及多个功能和压力测试。试验结果证明了PAV在设计压力窗下激活的可靠性和鲁棒性。本文将详细介绍AICV-PAV系统的工作原理和测试结果。在完井作业过程中,AICV-PAV系统作为储层和完井系统之间的屏障,防止储层流体进入完井管柱。这将大大降低完井管柱下入时的井控风险,特别是在裂缝或断层油藏中。此外,该系统允许所有地层处理液在完井管柱末端充分循环,从而消除了对内管柱的需求。此外,它还可以坐封尾管悬挂封隔器和液压坐封机械封隔器。这将节省额外作业的钻机时间,进一步降低成本/风险,提高作业效率。一旦PAV模块打开,它就会保持打开状态,正常的AICV功能就会建立起来。该系统已做好现场准备,将用于中东地区的一家主要运营商。PAV模块与AICV相结合,可确保尾管的压力完整性,适用于下部完井安装。这确保了在具有挑战性的情况下,特别是在井控问题下,可以优化下部完井装置。本文将介绍新开发的AICV-PAV系统的工作原理、功能,并详细讨论各种测试结果。
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Integrated Pressure Activated Valve with Autonomous Inflow Control Valve Technology Minimizes the Deployment Risks in Challenging Well Control Conditions
In heavily fractured carbonate reservoirs, wells often suffer heavy losses while running lower completion. To avoid any unexpected flow-back, continuous pumping is required. Failure to do this will result in flow-back of the reservoir fluid into the completion string and could reach the surface, leading to a major well control risk. Integrated Pressure Activated Valve (PAV) with Autonomous Inflow Control Valve (AICV) offers a unique solution to manage well control risks, allowing safe deployment of lower completion in such challengeable situations. The PAV module is mounted in series between the screen and AICV housing and will be a part of a lower completion. PAV-AICV system remains closed while RIH, ensuring no fluid can flow through it in either direction. Once the completion reaches the target depth and other pressure-activated completion tools are set/tested, then the PAV is triggered by applying the design pressure in the tubing. PAV will open once activated pressure is reached, and open when the pressure is released, establishing the flow path between the reservoir and tubing via AICV. The qualification test of the AICV-PAV integrated system involves multiple functions and pressure tests. The test results prove the reliability and robustness of the PAV to get activated at the design pressure window. This paper will describe in detail the operating principle along with the testing results of the AICV-PAV system. During the deployment of completion, the AICV-PAV system acts as a well barrier between the reservoir and the completions system and prevents reservoir fluid to enter the completion string. This will result in reducing the well-control risk significantly while deploying the completion string, especially in a fractured or faulted reservoir. Furthermore, this system allows all formation treatment fluids to be fully circulated through the end of the completion string, thus eliminating the requirement of an inner string. Furthermore, it also allows setting liner hanger packer and hydraulically set mechanical packers. This will result in saving rig time in running extra runs and further reducing cost/risks as well as increasing operational efficiency. Once the PAV module is open, it stays in an open position and normal AICV functionality is established. The system is field ready and will be deployed for a major operator in the Middle East. PAV module incorporated with AICV provides pressure integrity in the liner for lower completion installation. This ensures an optimized lower completion installation in challenging situations, especially with well control issues. This paper will describe the newly developed AICV-PAV system operating principle, functionality and discuss in detail the various testing results.
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