首页> 外文会议>SPE/IATMI Asia Pacific Oil Gas Conference and Exhibition >Successful Monetisation of an Extremely Thin Oil Rim and Slanted ContactReservoir,Offshore Malaysia,through Emerging Technologies andInnovative Concepts
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Successful Monetisation of an Extremely Thin Oil Rim and Slanted ContactReservoir,Offshore Malaysia,through Emerging Technologies andInnovative Concepts

机译:通过新兴技术和innovative概念,成功货币化了极薄的油轮和倾斜的Contactreservoir,马来西亚近海

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The scope of the paper is to share a case study of a successful horizontal well completed within an extremelythin oil rim of ~10ft with bottom water.This paper highlights the differentiating activities undertaken todeliver the well despite the challenges of extremely thin oil rim,strong water drive and uneven currentfluid contacts.Prior to drilling this well,attempt was made to mitigate the uncertainty regarding the current gas-oilcontact (GOC)and oil-water contact (OWC)by carrying out cased-hole logging in some of the adjacentwells,and re-sequencing and re-optimizing the location of two of the wells targeting the reservoirsbelow.This obviated the need for the pilot hole and thereby resulted in a cost saving of ~USD 1Million.Furthermore,the dynamic simulation model was updated to create a fit-for-purpose model with the latestOWC and GOC,so as to be able to test various trajectories.While drilling,the well was drilled with real-time reservoir mapping-while-drilling technology andintegrated with real-time reservoir characterization,fluid typing and trajectory modification,whilemaintaining Dog Leg Severity (DLS)below 3 deg/100ft for the ease of completion run.Completion was then optimized with viscosity-based inflow control orifices.Post drilling,dynamic andwell models were calibrated to the actual results to determine optimum production rate for the well life.The horizontal well was successfully navigated and optimally placed in the extremely thin oil column.Tilted contacts were encountered in the targeted subunits where actual current contacts came in ~20ftshallower at heel and ~10ft deeper at toe compared to prognosis.Consequently,the heel landed at a 5ftstand-off from water,and the toe landed 18ft stand-off from water and 6ft stand-off from gas.The well was successfully unloaded and tested at a controlled oil rate of 2887 bopd,50% higher thanplanned target.This paper presents the entire process from well planning until well production tie-in.This was achievedthrough the integration of subsurface understanding with the utilization of the appropriate technology.Finally,the management's trust in the capability of the team members ensured deliverability of the targetproduction rate and the consequent booked reserves.
机译:本文的范围是分享一个成功的水平良好完成的案例研究,在左下水的极其油边缘内完成。这篇论文突出了迄今为同挑战了巨大的户外油辋,强水的挑战。驱动和不均匀的流动联系人。通过在一些相邻的套件中进行套孔测井,尝试减少关于当前气体油(GOC)和油水接触(OWC)的不确定性。重新排序和重新优化瞄准储存储量的井中的两个孔的位置。这避免了对试验孔的需求,从而导致成本节省〜1million .Furthore,更新动态仿真模型以创建合适 - 用于用模型与latestOWC和GOC,以便能够测试各种trajectories.While钻孔,该孔用钻映射-而实时油藏技术andintegra钻出利用实时储层表征,流体打字和轨迹改性,止尾腿部严重程度(DLS)低于3°/ 100英尺,然后用基于粘度的流入控制Orifices优化了完成run.pection.post钻孔,动态钻孔模型被校准到实际结果,以确定井寿命的最佳生产率。横向井成功导航并最佳地放置在极薄的油柱中,在目标亚基中遇到了实际电流接触进入的目标亚基达到了〜20架脚跟和〜10英尺越深,脚趾与预后相比,脚跟在水中落在水中,脚趾从水中降落了18英尺的脱落,从气体脱落。井成功卸下并测试受控的油速度为2887个BOPD,50%高于50%的目标。本文从规划中呈现整个过程,直至生产良好的搭配。这是达到的h汇总地下理解利用适当的技术。最后,管理层对团队成员能力的信任确保了目标生产能力的可交付性和随后的预订储备。

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