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Reservoir-Navigation System and Drilling Technology Maximize Productivity and Drilling Performance in the Granite Wash, US Midcontinent

机译:储层导航系统和钻探技术可最大限度地提高美国中部大陆洲花岗岩洗矿的生产率和钻探性能

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The Granite Wash unconventional gas and oil play of the US mid-continent has a multitrillion-cubic-feet-equivalent upside potential. The condensates and natural-gas liquids associated with this gas play make it one of the most-prolific and fastest-growing unconventional fields in North America. However, efficient extraction of hydrocarbons from the Granite Wash play poses drilling and geological challenges. The Granite Wash deposit has significant lateral variation, with extremely abrasive thinly bedded sandstones. Geological complexity of this field requires precise placement and navigation of the wellbore in real time to overcome the variable characteristics of the reservoir. To overcome these challenges, logging-while-drilling (LWD) technology was used in conjunction with geosteering. An azimuthal gamma ray image was used to determine formation bed dip and stratigraphic complexity within the reservoir. Multiple-propagation resistivity measurements were used to correlate position within the reservoir and indicate formation porosity. The LWD data was transmitted in real time by means of satellite to a remote reservoir-navigation center where the reservoir-navigation engineer incorporated the real-time data into the geological model. This strategy has been implemented to drill with excellent results, as compared with the offset wells. The initial production rate obtained was 19.4 MMcfe/D (cfe = cubic foot equivalent). The well was completed 10 days ahead of schedule, resulting in significant cost savings. With the successful implementation of real-time reservoir-navigation and drilling technology, the operator accelerated their drilling program. The results are significant organic production growth, improved drilling performance, precise placement of the wellbore, and significant reduction in rotating hours at lower drilling and production costs.
机译:美国中部大陆的Granite Wash非常规天然气和石油蕴藏量具有数万亿立方英尺/英尺的上升潜力。与这种天然气活动相关的冷凝液和天然气液体使其成为北美最多产,增长最快的非常规气田之一。然而,从花岗岩洗矿中有效地提取碳氢化合物带来了钻井和地质挑战。 Granite Wash沉积物的横向变化很大,带有极具研磨性的薄层砂岩。该领域的地质复杂性要求实时精确地布置和导航井眼,以克服储层的可变特征。为了克服这些挑战,随钻测井(LWD)技术与地质导向技术结合使用。方位角伽马射线图像用于确定储层内的地层倾角和地层复杂性。使用多次传播的电阻率测量值来关联储层内的位置并指示地层孔隙度。 LWD数据通过卫星实时传输到远程水库导航中心,在这里水库导航工程师将实时数据整合到地质模型中。与偏移井相比,该策略已被实施以取得优异的钻探效果。获得的初始生产率为19.4 MMcfe / D(cfe =立方英尺当量)。该油井比计划提前了10天完工,从而节省了大量成本。随着实时油藏导航和钻井技术的成功实施,操作员加快了钻井程序。结果是显着提高了有机产量,改善了钻井性能,精确地布置了井眼,并显着减少了旋转时间,同时降低了钻井和生产成本。

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