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    深层−超深层碳酸盐岩储层地震岩石物理特征研究进展

    Research progress on seismic rock physical characteristics of deep to ultra-deep carbonate reservoirs

    • 摘要: 碳酸盐岩地层蕴藏着丰富的油气资源,是深层−超深层油气勘探的重点目标。深层−超深层碳酸盐岩储层类型多样,压实程度高,骨架非均质性强,孔/裂隙结构复杂,流体分布不均,受高温高压环境影响,导致该储层岩石物理特征变化规律尚不清楚,储层地震预测和定量解释精度低。地震岩石物理是搭建储层特性与地震特性之间的桥梁,本文分析了碳酸盐岩储层勘探开发、高温高压岩石物理实验、碳酸盐岩矿物及碳酸盐岩的岩石物理特征研究现状,梳理了碳酸盐岩成岩过程、孔隙结构、流体性质以及温压对碳酸盐岩弹性、衰减特征的影响规律研究进展,探究了深层−超深层碳酸盐岩储层岩石物理研究的关键科学问题和未来攻关方向。碳酸盐岩岩石物理研究要以目标层段地质演化过程为引导,综合考虑储层温压条件、基质矿物、孔隙结构及流体性质等因素,研究其对碳酸盐岩岩石物理特征影响规律,从而支撑深层−超深层碳酸盐岩油气藏的地质−物探一体化高效勘探和开发。

       

      Abstract: Global carbonate formations harbor abundant oil and gas resources, serving as key targets for deep to ultra-deep hydrocarbon exploration. Deep to ultra-deep carbonate reservoirs exhibit diversified types, high degrees of compaction, strong skeleton heterogeneity, complex pore/fracture structures, and heterogeneous fluid distributions. Coupled with the influence of high temperature and high pressure, these complexities result in a poor understanding of the rock physical characteristics of these reservoirs and low accuracy in their seismic prediction and quantitative interpretation. Seismic rock physics bridges reservoir properties and seismic responses. This study analyzes the current status of carbonate reservoir exploration and development, high-temperature and high-pressure rock physical experiments, and research on the rock physical characteristics of carbonate minerals and rocks. It reviews key advances in carbonate diagenesis, pore structure, fluid properties, and the influence of temperature and pressure on the elastic and attenuation properties of carbonate rocks. It also explores key scientific issues and future research directions in deep to ultra-deep carbonate reservoir rock physics. Research on carbonate rock physics should be guided by the geological evolution of the target intervals. It must comprehensively investigate the influence of reservoir temperature and pressure conditions, matrix minerals, pore structure, and fluid properties on the rock physical characteristics of carbonates, so as to support the efficient exploration and development of deep to ultra-deep carbonate oil and gas reservoirs through geology-geophysics integration.

       

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