巴基斯坦 Potwar 盆地 Meyal 地区地震反射数据解释和岩石物理评估

Manawar Pervaiz, Yanfei Wang
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摘要

尽管在 Potwar 盆地开展了广泛的勘探工作,但透彻了解 Meyal 油田的结构框架和储层特征对于确定潜在的油气区仍然至关重要。本研究旨在将地质学和地球物理学相结合,强调对 Meyal 油田的构造和地层解释,包括利用地震和井记录数据进行储层特征描述。六条地震测线的地震解释侧重于四个关键反射体:Kamlial、Chorgali、Sakesar 和 Salt Range 地层。始新世的 Chorgali 和 Sakesar 地层对勘探和生产至关重要。构造分析表明,梅亚尔反斜线是一个俯冲构造,北侧为背斜,南侧为前斜,这表明这里是油气积聚的有利位置。根据地震数据绘制的时深等值线图进一步划定了未来调查的潜在地点。油井相关性表明,与 Meyal-5 号油井相比,Meyal-2 号油井出现了隆起,这表明推覆构造造成了油井变浅的趋势。这种构造体系使该地区具有很高的碳氢化合物勘探前景,推力和斜滑断层提高了始新世地层的储层质量。岩石物理评估显示了良好的储层特征,包括平均孔隙度在 0% 至 12% 之间,有效孔隙度约为 7.5%,水饱和度高达 42%,储层含水层内的碳氢化合物饱和度高达 58%。这些发现表明,梅亚尔油田内的 Sakesar 和 Chorgali 地层有望成为高产油气藏。这项综合研究为结构框架和储层特征提供了宝贵的见解,凸显了始新世地层在有利的结构配置和岩石物理特性支持下作为高产油气藏的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SEISMIC REFLECTION DATA INTERPRETATION AND PETROPHYSICAL EVALUATION OF MEYAL AREA, POTWAR BASIN, PAKISTAN
Despite extensive exploration efforts in the Potwar Basin, a thorough understanding of the structural framework and reservoir characteristics within the Meyal Field remains critical for pinpointing potential hydrocarbon zones. This study aims to integrate geology and geophysics to emphasize the structural and stratigraphic interpretation of the Meyal Field, including reservoir characterization using seismic and well-log data. The seismic interpretation of six seismic lines focused on four key reflectors: the Kamlial, Chorgali, Sakesar, and Salt Range Formations. The Eocene Chorgali and Sakesar Formations are of primary importance for exploration and production. Structural analysis revealed the Meyal anticline to be a plunging structure bounded by a back-thrust to the north and a fore-thrust to the south, suggesting a favorable location for hydrocarbon accumulation. Time-depth contour maps derived from seismic data further delineate potential sites for future investigations. Well correlation indicated an uplift towards Meyal-2 compared to Meyal-5, signifying a shallowing trend attributed to thrust tectonics. This tectonic regime has rendered the area highly prospective for hydrocarbon exploration, with thrusting and oblique-slip faulting enhancing the reservoir qualities of Eocene formations. The petrophysical evaluation revealed favorable reservoir characteristics, including an average porosity ranging from 0% to 12% with an effective porosity of approximately 7.5%, water saturation up to 42%, and hydrocarbon saturation reaching 58% within the pay zone of the reservoir. These findings suggest that the Sakesar and Chorgali Formations within the Meyal oil field hold promise as productive hydrocarbon reservoirs. The integrated study provides valuable insights into the structural framework and reservoir characterization, highlighting the potential of Eocene formations as productive hydrocarbon reservoirs supported by favorable structural configurations and petrophysical properties.
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