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Single Trip Multizone Perforation and Gravel Pack STPP: Success Story and Lessons Learned in Malaysian Application

机译:单行程多态穿孔和碎石包STPP:马来西亚申请中学到的成功故事和经验教训

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Objectives/Scope: Downhole sand exclusion is becoming an essential sandface completion concept for brown fields in Peninsular Malaysia Oil Fields as reservoir pressure declines and formation sand weakens with production and water breakthrough. Additionally, multi-stack reservoirs require good zonal isolation to prevent cross flow between reservoirs with different pressure regime and to ensure gas and water breakthrough is delayed as long as possible. As such, Cased Hole Gravel Pack (CHGP) is the preferred method in many Malaysian fields. However, a lot of marginal fields become uneconomic due to the high cost and complexity of CHGP. Therefore, reducing CHGP’s cost and time becomes vital to ensure that projects improve the economics while at the same time ensuring good productivity from the reservoir. Methods, Procedures, Process: Traditionally, CHGP is performed zone-by-zone whereby the process of sump packer installation, perforation run, deburr run, gravel pack assembly installation and gravel pumping is repeated for each zone. In most cases, fluid loss pill which induces impairment of the formation is required. The paper will highlight on the Alternate Path System (APS) which enables single trip multiple-zone gravel packing whereby a repetitive process is only performed once. Gravel mixed continuously with low friction viscoelastic surfactant fluid allows for transportation to the lower zones via shunt-tubes attached to the screens even at extended shunt length. The APS system is then combined with Drill Stem Test (DST) and Tubing Conveyed Perforating (TCP) equipment to make a whole system of Single Trip Multizone Perforation and Pack (STPP) Results, Observations, Conclusions: STPP technology was deployed in a campaign of four deviated and high temperature oil wells in a marginal field whereby the rig time saving was up to three days per well translating to almost USD 1 MM of cost saving which boosted project’s economics. Furthermore, STPP technique allows for gravel packing operation without fluid loss pill and less completion fluid loss in the formation which translates to better formation productivity and less impairment.Novel/Additive Information: Premature setting of GP Packer in one of the wells due to rupture disc failure within STPP system is the first such occurrence in the world. A lesson learned on how to ensure that it will not be repeated will be shared with all attendees.
机译:目标/范围:井下砂排除正成为半岛马来西亚油田的棕色田地的基本砂面完成概念,因为水库压力下降和形成砂随着生产和水突破而削弱。此外,多堆叠储存器需要良好的区域隔离,以防止具有不同压力调节的储存器之间的交叉流动,并且尽可能长时间延迟气体和水突破。因此,套管孔砾石包(CHGP)是许多马来西亚领域中的优选方法。然而,由于CHGP的高成本和复杂性高,大量边缘场变得不经济。因此,降低CHGP的成本和时间变得至关重要,以确保项目改善经济性,同时确保水库的良好生产力。方法,程序,过程:传统上,CHGP进行了逐个区域,从而为每个区域重复凹陷封装机安装,穿孔运行,DEBURR运行,砾石组件安装和砾石泵的过程。在大多数情况下,需要诱导形成损伤的流体损失丸。本文将在备用路径系统(AP)上突出显示,该路径系统能够进行单行跳闸多区砾石填充,由此仅执行重复过程一次。用低摩擦粘弹性表面活性剂流体连续混合的砾石允许通过连接到屏幕上的分流管运输到下部区域,即使在延长的分流长度。然后将APS系统与钻杆测试(DST)和管道输送的穿孔(TCP)设备相结合,使整个系统的单行程多态穿孔和包装(STPP)结果,观察结果:STPP技术部署在一个广告系列中四个偏差和高温油井在边缘领域,钻机节省时间长达三天,转化为近1毫米的成本节约,促进了项目的经济学。此外,STPP技术允许在没有流体损失丸的情况下允许砾石填料操作,并且在地层中的完成流体损失较少,这转化为更好的形成生产率和更少的损伤.Novel /添加剂信息:由于破裂盘引起的井中的GP包装机的早产STPP系统内的失败是世界上第一个这样的事件。关于如何确保不会重复的课程将与所有与会者共享。

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