Slim Pulsed Neutron Spectroscopy Integrated with Wellbore Imaging to Provide Synthetic Core in Slim Boreholes and Cased-Hole Environment

K. Saleh, C. Cavalleri, Hugo Espinosa, Mohamed Ghanim, M. Galal, Renata Gomes, Aly Morad
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Abstract

Recent advancement in logging technology and data analytics enables measuring a comprehensive set of formation petrophysical properties and rock composition in cased-hole environments. Using state-of-art pulsed neutron logging technology and processing algorithms enables recording capture and inelastic elemental spectroscopy for rock elemental concentrations, including total organic carbon, detailed mineralogy and matrix properties, simultaneously to sigma and other neutron-based outputs. The integration of the interpreted lithology from cased-hole elemental spectroscopy data with electrofacies from high-resolution imaging tools recorded in the open-hole provides the characterization of heterogeneity challenges by building a synthetic core in old wells with limited data gathering from open-hole logging or absence of conventional coring. An effective way to incorporate those measurements has been developed and adapted to the use of cased-hole spectroscopy logs. The dry weight elemental fractions measured by the advanced pulse neutron technology are corrected for wellbore contribution and converted into dry weight mineralogical outputs. Using an automated processing workflow converts the capture and inelastic gamma-ray yields from the energy spectrum measured behind casing into the dry weight of elements and mineral fractions in the formation. The computed mineralogical outputs are then defined based on a standardized ternary diagram approach to developing dry-weight mineralogy-based lithofacies. This classification is then combined with the calibrated micro-resistivity image data collected during the open-hole logs evaluation to present a high-resolution rock typing (after Kumar & Kear). The resulting log is dry weight mineralogy-based high-resolution lithofacies that contain vital information to support geological and petrophysical reserves modeling adjustments during development and production. The paper demonstrates the applicability of the method to cased-hole environments in fields with mixed lithology and complex geological background. Once a robust lithofacies classification is achieved, this is applied for detailed stratigraphic analysis, well-to-well correlation, or refined static reservoir modeling. A standardized mineral-based facies scheme guides the selection of higher completion-quality intervals, otherwise difficult to define in old wells with limited original evaluation. Besides, thin beds that were previously bypassed can be detected and characterized for high-resolution net pay calculation leveraging the high-resolution lithofacies output from this approach. The lithofacies classification (synthetic core) provides important input to the study of reservoir connectivity in the development phase and production optimization. Moreover, a synthetic core description would be critical when reassessing mature fields and defining completion and production strategies where core data is not available. The approach and workflow can be implemented in various cases as a cost-effective solution in multiple scenarios and different formation types.
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细径脉冲中子光谱学与井筒成像相结合,可在细径井眼和套管井环境中提供合成岩心
测井技术和数据分析技术的最新进展使得在套管井环境中测量一套全面的地层岩石物理性质和岩石成分成为可能。利用最先进的脉冲中子测井技术和处理算法,可以记录岩石元素浓度的捕获和非弹性元素光谱,包括总有机碳、详细的矿物学和基质性质,同时可以获得sigma和其他基于中子的输出。将套管井元素谱数据的解释岩性与裸眼记录的高分辨率成像工具的电相相结合,在裸眼测井数据收集有限或没有常规取心的情况下,通过在老井中构建合成岩心,可以表征非均质性挑战。已经开发出一种有效的方法来整合这些测量结果,并适应于套管井光谱测井的使用。通过先进的脉冲中子技术测量的干重元素分数经过井筒贡献校正,并转换为干重矿物输出。利用自动化处理工作流程,将套管后测得的能谱捕获和非弹性伽马射线产量转换为地层中元素和矿物组分的干重。计算出的矿物学结果然后根据标准三元图方法来定义,以开发干重矿物为基础的岩相。然后,将该分类与裸眼测井评估期间收集的校准微电阻率图像数据相结合,得出高分辨率的岩石类型(在Kumar & Kear之后)。由此产生的测井数据是基于干重矿物的高分辨率岩相,其中包含重要信息,可支持开发和生产期间的地质和岩石物理储量建模调整。本文论证了该方法在复杂岩性、复杂地质背景油田套管井环境中的适用性。一旦获得了可靠的岩相分类,就可以应用于详细的地层分析、井对井对比或精细的静态油藏建模。标准化的矿物相方案指导选择更高完井质量的层段,否则很难在原始评价有限的老井中确定。此外,利用该方法的高分辨率岩相输出,可以检测和表征以前绕过的薄层,并进行高分辨率净产层计算。岩相分类(合成岩心)为开发阶段储层连通性研究和生产优化提供了重要输入。此外,在无法获得岩心数据的情况下,在重新评估成熟油田、确定完井和生产策略时,综合岩心描述将是至关重要的。该方法和工作流程可以作为一种经济有效的解决方案应用于多种情况和不同的地层类型。
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A Major Shift In Reservoir Management Strategies And Best Practices In A Mature Reservoir To Overcome The Current Reservoir Challenges: Case Study Development and Qualification of a Unique ICD Completion Design to Improve Operational Well Efficiency Machine Learning Assisted Petrophysical Logs Quality Control, Editing and Reconstruction Slim Pulsed Neutron Spectroscopy Integrated with Wellbore Imaging to Provide Synthetic Core in Slim Boreholes and Cased-Hole Environment An Integrated Approach to Optimise an Offshore Field Development Plan
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