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Methodology for Planning and Execution of Multilateral Well Design Together with Enhanced Geo-Navigation Techniques for Optimum Well Placement in Complex Geological Environment

机译:与增强的地质导航技术一起规划和执行多边井设计的方法,以实现复杂地质环境中的最佳井放置

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The Sabiriyah Mauddud calcareous reservoir,located in North Kuwait is one of the major hydrocarbon assets in the country.A study was prepared in order to maximize production by implementing a multilateral,multi-zones well path.The paper discusses the methodology for the planning and execution of the first in its class Mauddud reservoir multilateral producer.This study illustrates the implementation of a unique approach for a challenging well design,including two lateral sections(L0 & L1)in a complex reservoir structure targeting multiple zones.Precise and continuous monitoring of the directional measurements was essential for the successful delivery of the mother wellbore,while fulfilling project constrains.The bottom hole assembly(BHA)used in the 6-1/8"horizontal sections was comprised of a rotary steerable system(RSS)with near bit gamma,azimuthal deep resistivity distance-to-boundary technology,and near bit density/porosity.Specialized software were used in creating geo-navigation models of the target reservoir zones.The real-time dynamic interpretation of the structure morphology was key in order to maximize exposure of the productive zones while minimizing the contact with non-productive zones.The openhole sidetrack technique for the startup of L1 involved a detailed procedure,and a special feature designed into the well plan to facilitate the sidetrack in the desired zone.Water based mud was used to optimize logging while drilling(LWD)measurements in order to clearly predict fractured zones,while mud weight recommendation and pressure hazard identification was based on geo-mechanical analysis.The well was successfully executed,tripling the production when compared to a single horizontal producer recorded in the same reservoir zones.The sidetrack procedure implemented allowed to initiate the drilling of L1 with the same bottom hole assembly(BHA)from L0 without pulling out of the hole,this approach considerably helped to save rig time.The positioning of the LWD sensors close to the bit significantly reduced the reaction time and minimized the challenges induced by sudden changes in reservoir properties.Similarly,the enhanced geo-navigation technique of integrating near bit density/porosity and the azimuthal deep resistivity distance-to-boundary technology played an important role in successfully navigating the wellbore within the multiple reservoir zones with confidence.This multilateral well has proven the concept of implementing shorter lateral sections to target multiple zones of interest,aiming for enhanced production when compared to projects with single longer laterals.The novelty of this work is the optimized methodology established for hydrocarbon extraction from a challenging reservoir.The implementation of these sidetrack procedures combined with enhanced geo-navigation techniques resulted in optimum well placement and the successful delivery of the first multilateral,multi-zones producer in North Kuwait.
机译:位于科威特的Sabiriyah Mauddud钙质水库是该国的主要碳氢化合物资产之一。制定了研究,以便通过实施多边多地井道来最大化生产。本文讨论了规划的方法论执行第一个在其类Mauddud水库多边生产商中。本研究说明了实现具有挑战性的井设计的独特方法,包括靶向多个区域的复杂储存器结构中的两个横向部分(L0&L1)。预测和连续监测定向测量对于成功递送母井筒的成功,同时满足项目限制。6-1 / 8“水平部分中使用的底部孔组件(BHA)由靠近钻头的旋转转向系统(RSS)组成。伽玛,方位角深电阻率距离边界技术,以及近位密度/孔隙度。专业软件用于创建地理导航MO目标水库区域的德尔斯。结构形态的实时动态解释是为了最大限度地提高生产区域的暴露,同时最小化与非生产区域的接触。L1启动的透露型侧型侧面技术涉及详细程序,设计成井计划的特殊功能,以便于所需区域中的侧面。水下的泥浆用于在钻井(LWD)测量时优化测井,以便清楚地预测裂缝区域,而Mud重量推荐和压力危险识别基于地理机械分析。与在同一水库中记录的单个水平制片人相比,该井成功地执行,增加了生产。实施的侧面允许用相同的底孔组件启动L1的钻孔(BHA )从L0而不拉出孔,这种方法很大程度上有助于节省钻机时间。LWD S的定位靠近该位的easors显着降低了反应时间,并最大限度地减少了储层特性突然变化诱导的挑战。相似,增强了整合近位密度/孔隙度和方位的深电阻率距离边界技术的增强的地理导航技术在成功导航多个水库区内的重要作用,充满信心。这一多边井已经证明了实现更短的横向部分来瞄准多个感兴趣区域的概念,旨在加强生产与单个较长的横向的项目相比。新颖的这项工作是从挑战储层的碳氢化合物提取建立的优化方法。这些侧面的实施与增强的地球导航技术相结合,导致了最佳的井下放置和北科威特第一多个多区生产商的成功交付。

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