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BHA and Fluid Rheology Modeling:An Integrated Approach to Solving Complex Unconventional Shale Play Challenges

机译:BHA和流体流变型建模:解决复杂的非传统页岩的综合方法挑战

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The Bakken Shale is one of the largest,unconventional crude oil plays in the United States covering as much as 25,000 sq miles in the Williston Basin.The formation underlies portions North Dakota and Montana and is found at depths ranging from 9000ft to 10,500ft.Reserve estimates vary but the United States Geological Survey(USGS)has calculated risked undiscovered resources of up to 4.3 billion barrels of recoverable oil and bbl/cu ft equivalent using current technology.At this time the field is being developed with single,dual and triple-leg horizontal wells with laterals extending 4500ft to 9500ft into the formation.However,drilling activity in the area has fluctuated as a result of changing oil prices.Accordingly,reducing overall operation costs is essential to the economic feasibility of each drilling project.Because of the significant impact on drilling costs,the correct selection and utilization of drilling equipment including bits,drilling fluids,hydraulics and downhole tools is paramount.To optimize operations,a holistic approach was adopted to create a drilling"road map"utilizing several application software systems.These software tools enable engineers to envision the specific drilling environment and tool/BHA interaction before the bit goes in the hole.A recent Bakken project included expert drill bit selection,rock mechanics analysis,shock studies,drilling fluids and hydraulics optimization.The directional well plan was optimized with wellbore simulation software.In order to circumvent deficient options prior to and during actual drilling operations,multiple scenarios are simulated using a collection of detailed geological and offset drilling information.These results were studied,analyzed and assessed as the optimum drilling solution prior to submitting them to the operator.Finally,the service provider monitored and implemented the recommended engineered solutions.The initial results were encouraging:Drilling days on Well 1 were reduced by 30% which represents a cost savings of $572,000USD while achieving the drilling target and delivering a high-quality wellbore.Building on this initial success,second and third wells confirmed the value of holistic optimization saving the operator 13 days($676,000USD)and 16 days($832,000USD)of rig time respectively.
机译:Bakken Shale是美国最大的非常规原油剧中的最大,覆盖大约25,000平方英里的威利斯顿盆地。地层是北达科他州和蒙大拿州的地层,并且在900英尺到10,500英尺的深度范围内。估计变化,但美国地质调查(USGS)计算出的冒险资源风险最高可获得43亿桶可回收的油和BBL / CU FT等效物。此时该领域正在使用单一,双和三倍开发腿部水平孔​​,横向延伸4500英尺到9500英尺的地层。然而,该地区的钻井活动由于油价而导致。根据每个钻井项目的经济可行性,降低整体运营成本是至关重要的。对钻井成本的显着影响,钻孔设备的正确选择和利用包括位,钻井液,液压和井下工具倾向于优化操作,采用整体方法来创建利用若干应用软件系统的钻探“路线图”。这些软件工具使工程师能够设想在钻头进入钻孔之前设想特定的钻井环境和工具/ BHA交互.a最近的Bakken项目包括专家钻头选择,岩石力学分析,休克研究,钻井液和液压优化。定向井规划与井筒仿真软件进行了优化。在实际钻井操作之前和在实际钻井业务期间的选择,以规避缺陷的选择,多种情况使用详细地质和偏移钻探信息的集合进行模拟。在将它们提交到运营商之前,研究了结果,分析和评估为最佳钻探解决方案。最后,服务提供商监控和实施推荐的工程解决方案。初步结果是令人鼓舞:1井的钻井天数减少了30%的重症ESENS节省572,000美元,同时实现钻井目标并提供高质量的井筒。在这一初步成功,第二和第三井确认了整体优化的价值,节省了操作员13天(676,000美元)和16天(832,000美元) USD分别的钻机时间。

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