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The Combined Application of Azimuthal Deep Resistivity and Multi-Lateral Technologies Maximizes Extra-Heavy Oil Recovery and Improves Production Rates in Junin Block of the Orinoco Oil Belt

机译:方位角深度电阻率和多横向技术的综合应用最大化超重的石油回收,并提高了矿床油带的君宁块的生产率

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Petroleos de Venezuela, S.A. (PDVSA) Petrocede?o has encountered challenges in achieving higher production rates and maximizing extra-heavy oil recovery from complex reservoirs in the Junin block of the Orinoco oil belt of Venezuela. These complex reservoirs are located in heterolytic deltaic depositional environments, with heterolitic thicknesses ranging from 10 to 20 ft. This block produces 150,000 B/D from more than 700 horizontal wells. Most of these wells were drilled in relatively homogeneous sands with good thickness; however, large extra-heavy oil reserves are trapped in a more geologically and operationally complex deltaic reservoir sand. Horizontal wells in this area show poor production results. For these reservoirs, the geosteering technique with azimuthal deep resistivity technology was proposed to maximize oil recovery by positioning the wellbore in a better pay-zone; advanced drainage multilateral architecture was proposed to improve production rates by increasing reservoir exposure. Multilateral technology has been used successfully in the area. Sand problems, observed in some multilateral wells, were solved by using a junction support tool to provide mechanical and hydraulic integrity at the junction area. A real-time geosteering technique enabled a flawless wellbore placement within this reservoir with challenging stratigraphy and complex sedimentological environment in which more than 60 wells have been drilled with azimuthal deep resistivity tools. The well YC-36 well plan included drilling two laterals with the geosteering technique, which would improve the production rate to an estimated 343 B/D. After installing a multilateral level IV junction and positioning YC-36 100% in the net oil sand, the reported production increased to 650 B/D for an increase of approximately 300%, as compared to an average single well production from the block. This paper describes the combined application of multilateral and geosteering technologies in the YC-36 well and details about the results of the application.
机译:Petroleos de Venezuela,S.A.(PDVSA)Petrocede?O遇到挑战在委内瑞拉奥林多拉的奥林科油带的君主块中的复杂水库中最大化超重的储蓄。这些复杂的储存器位于异解型沉积环境中,具有10至20英尺的异酚素厚度。该块从700多个水平孔中产生150,000b / d。这些孔中的大部分井在相对均匀的砂岩中钻孔,厚度良好;然而,大型超重的石油储量被捕获在更加地质和可操作的复杂的嵌入式储层砂中。该地区的水平井显示出差的生产结果。对于这些储存器,提出了具有方位形深电阻率技术的地蹄技术技术,以通过将井筒定位在更好的工资区中来最大化石油回收;提出先进的排水多边架构,以提高水库暴露的提高生产率。多边技术已在该地区成功使用。在一些多边井中观察到的沙子问题通过使用结焊接工具来解决在接线区域的机械和液压完整性。实时地升技术在该储层中启用了具有完美无瑕的井筒放置,具有具有挑战性的地层和复杂的沉积学环境,其中已经用方位形深电阻率工具钻出了超过60个井。井YC-36井规划包括钻取两个具有地蹄技术的侧面,这将将生产率提高到估计的343b / d。在净油砂中安装多边IV连接和定位Yc-36 100%后,报告的产量增加到650 b / d,同比增加约300%,相比块的平均单井生产相比。本文介绍了多边和地均操纵技术在YC-36井中的应用以及关于应用结果结果的细节。

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