Integration Success Story in Shilaif Shale Oil from Vertical Pilot to Horizontal

Amena Alharthi, Pierre Van Laer, Trevor Brooks, Pierre-Olivier Goiran, M. Baig, Nabila Lazreq, Hamza Abdelhalim, Hassan Al Marzooqi, Marco Coscia
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Abstract

The development of unconventional target in the Shilaif formation is in line with the Unconventional objective towards adding to ADNOC reserves. For future optimization of development plans, it is of utmost importance to understand and test and therefore prove the productivity of the future Unconventional Horizontal Oil wells. The Shilaif formation was deposited in a deeper water intrashelf basin with thicknesses varying from 600 to 800 ft from deep basin to slope respectively. The formation is subdivided into 3 main composite sequences each with separate source and clean tight carbonates. The well under consideration (Well A-V for the vertical pilot and Well A-H for the horizontal wellbore) was drilled on purpose in a deep synclinal area to access the best possible oil generation and maturity in these shale Oil plays. Due to the stacked nature of these thick high-quality reservoirs, a pilot well is drilled to perform reservoir characterization and test hydrocarbon type and potential from each bench. Fracturing and testing are performed in each reservoir layer for the primary purpose to evaluate and collect key fracturing and reservoir parameter required to calibrate petrophysical and geomechanical model, landing target optimization and ultimately for the design of the development plan of this stacked play. Frac height, reservoir fluid composition and deliverability, pore pressure are among key data collected. The landing point selected based on the comprehensive unconventional core analysis integrated with petrophysical and geomechanical outcomes using post vertical frac and test results. Well A-H was drilled as a sidetrack from the pilot hole Well A-V. This lateral section was logged with LWD Triple Combo while Resistivity Image was acquired on WL. Based on the logging data the well stayed in the target Layer / formation, cutting analysis data for XRD and TOC was integrated with the petrophysical results in A-H well. Production test results from subject were among the highest rate seen during exploration and appraisal of this unconventional oil plays and compete with the current commercial top tier analog unconventional oil plays. Achieving those results in such early exploration phases is huge milestone for ADNOC unconventional exploration journey in UAE and sign of promising future development.
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石赖夫页岩油从垂直试点到水平整合的成功案例
Shilaif组非常规目标的开发符合增加ADNOC储量的非常规目标。对未来非常规水平井的产能进行了解、测试和验证,对未来非常规水平井开发方案的优化至关重要。石莱夫组沉积于较深的陆架内盆地,从深盆到坡面厚度分别为600 ~ 800 ft。该地层被划分为3个主要的复合层序,每个层序都有独立的来源和清洁的致密碳酸盐。考虑中的井(a - v井为垂直先导井,a - h井为水平井)是特意在一个深向斜区钻探的,目的是在这些页岩油区获得最佳的产油和成熟度。由于这些厚的优质储层具有层叠性,因此需要钻一口试验井来进行储层表征,并测试每个台阶的油气类型和潜力。在每个储层进行压裂和测试,主要目的是评估和收集关键的压裂和储层参数,以校准岩石物理和地质力学模型,优化着陆目标,并最终设计该叠层储层的开发计划。采集的关键数据包括裂缝高度、储层流体成分和产能、孔隙压力。着陆点的选择是基于对非常规岩心的综合分析,结合岩石物理和地质力学结果,利用垂直压裂和测试结果。a - h井是a - v井的侧钻井。该水平段采用随钻测井Triple Combo测井,同时在WL上获取电阻率图像。根据该井在目标层/地层中的测井数据,将XRD和TOC的切削分析数据与A-H井的岩石物理结果相结合。该项目的生产测试结果在该非常规油区的勘探和评价中是最高的,与目前的商业顶级模拟非常规油区竞争。在早期勘探阶段取得这些成果对ADNOC在阿联酋的非常规勘探之旅来说是一个巨大的里程碑,也是未来发展前景的标志。
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