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Lateral Wellbore Rock Characterization and Hydraulic Fracture Optimization Utilizing Drilling Cuttings and Mud Log in Cleveland Sand: A Case Study

机译:利用钻井扦插和泥岩岩体横向井筒岩石表征和液压断裂优化:案例研究

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Optimizing a hydraulic fracture stimulation in a horizontal well requires an understanding of the petrophysical properties, and the near-wellbore and far-field stresses along the entire lateral. Such reservoir characterization is normally developed from a geomechanical and petrophysical analysis using wireline or logging-while-drilling services that include acoustic and borehole-image logs. Unfortunately, economic considerations often inhibit or preclude complete characterization, especially in the current economic climate. An affordable and convenient alternative for reservoir characterization is to use commonly recorded data, such as drilling mechanics and steering information, to provide a gross characterization. Adding a comprehensive drill cuttings analysis provides insight into rock texture, mineralogy, and rock properties along the entire length of the lateral that is not available from the nominal real-time services. When performed in real time, such studies help ensure that the well stays on-target and within in the pay zone. Such information can later augment the reduced data sets to improve the completion strategy and hydraulic fracture design. This paper describes a case study of a 4-well fracturing campaign in the lower Cleveland sand in Ellis County, Oklahoma. The objective of this project was to compare the completion and production from geometrically stimulated wells against an equal number of wells with an engineered optimization plan. The basic information included drilling data, steering information, and a basic mud and gas log. The optimization on the two engineered wells included an advanced drill cuttings analysis that provided rock texture, mineralogy, and rock properties along the entire length of the lateral. In addition, the drill cuttings were evaluated by a rock laboratory for fluid sensitivity. The results of this study show a significant improvement in the hydraulic fracturing treatment results. The engineered fractured completions were 70% faster- in particular eliminating screenouts that affected operations in one of the geometrically designed wells. The design process is described and has been extended to include the results of the drill cuttings analysis, and incremental results from fracture operations. These are correlated with the plan wells, and a comparison of the available production data is included in the final evaluation of the technique. The lower Cleveland sand was amenable to using this reduced data set for fracture optimization, and this method may be applicable to similar formations.
机译:优化水平井中的液压断裂刺激需要了解岩石物理性质,以及沿整个侧面的近井眼和远场胁迫。这种储存器表征通常是从地磁和岩石物理学分析使用的有线或钻井服务,包括声学和钻孔图像日志。不幸的是,经济考虑往往抑制或排除完全表征,特别是在当前的经济气氛中。用于储层表征的实惠且方便的替代方案是使用常规记录的数据,例如钻井力学和转向信息,以提供总体表征。添加综合钻削切割分析,沿着标称实时服务不可用的横向的整个长度,提供了进入岩石纹理,矿物学和岩石性能的洞察力。当实时执行时,这些研究有助于确保井保持在目标和内部。此类信息稍后可以增强减少的数据集,以改善完成策略和液压骨折设计。本文介绍了俄克拉荷马州埃利斯县下克利夫兰沙子4井断裂运动的案例研究。该项目的目的是将几何刺激井的完成和生产与具有工程优化计划的平等数量的井进行比较。基本信息包括钻取数据,转向信息和基本泥浆和气体日志。两种工程井的优化包括沿着横向的整个长度提供岩石纹理,矿物学和岩石性能的高级钻孔切割分析。此外,通过岩石实验室评估钻屑,用于流体敏感性。该研究的结果表明液压压裂处理结果的显着改善。工程化的裂缝完成速度较快70% - 特别是在几何设计的井中的影响中消除了影响的屏幕外。描述了设计过程,并且已经扩展到包括钻头切割分析的结果,以及来自裂缝操作的增量结果。这些与平面孔相关,并且可以将可用生产数据的比较包含在该技术的最终评估中。较低的克利夫兰砂均适用于使用这种减少的数据集进行裂缝优化,并且这种方法可能适用于类似的地层。

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