埃及苏伊士el Morgan油田海湾北部hamam faraun段储层特征

Ahmed Walaan, Alaa Mostafa, Mahmoud Hassaan
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摘要

本研究的主要目的是在岩石物理和沉积学综合研究的基础上,探测北El Morgan油田Belayim组Hammam Faraun段的储层特征。通过对现有的常规、先进的数字测井数据(大规模)和岩心分析数据(小规模)进行综合解释,本研究的工作流程集成了多种数据评估技术和多种数据尺度。岩石物理工作表明,油气饱和度、页岩体积和有效孔隙度沿储层变化较大。核磁共振测井显示了沿储层不同的粘土束缚体积、毛细束缚水体积和自由流体含量。通过岩心岩样描述、岩心测井和切沟描述等沉积学研究,了解了储层相分布、储层沉积旋回、不同岩石类型之间的关系以及储层的非均质性。通过岩石物性和沉积学综合研究,将hamam Faraun油藏划分为3个层带(hamam Faraun B1、B2和B3层),这些层带具有不同的储层质量和相类型,从而了解了研究区内各层带的动态和生产动态。通过使用岩石物理和沉积学结果,我们可以勾勒出可能的机会区域,并为油田制定枯竭开发计划,通过钻新的开发井和注水井来帮助提高油田产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RESERVOIR CHARACTERIZATION OF HAMMAM FARAUN MEMBER IN NORTH EL MORGAN FIELD GULF OF SUEZ, EGYPT
The main purpose of this work is to detect reservoir characterization of Hammam Faraun member of Belayim formation at North El Morgan oil filed based on integration of petrophysical and sedimentological studies. The work-flow in this study integrates multiple data evaluation techniques and multiple data scales by using a comprehensive interpretation of the available conventional, advanced digital well log data (large scale) and core analysis data (small scale). The petrophysical work shows the hydrocarbon saturation, shale volume and effective porosity are varied along reservoir. The NMR logs shows various clay bound volume, capillary bound water volume and free fluid content along the reservoir. The sedimentological work done includes core sample description, core log and ditch cutting description, that helped to understand facies distribution along reservoir zones, depositional cycles recorded in reservoir zones, relationship between different rock type and understanding the heterogeneity of the reservoir. Integrated petrophysical and sedimentological work lead to divide Hammam Faraun reservoir in to three zones (Hammam Faraun B1, B2 and B3 zones) which have different reservoir quality, facies type and lead to understand the behavior and production performance of each zone along area of study. By using petrophysical and sedimentological results we can outline possible opportunity areas as well as generate depletion development plan for the field to help in increasing field production through drilling new development wells and water injection wells.
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