• 主管:

      天津市地质矿产勘查开发局

    • 主办:

      天津地热勘查开发设计院

    • ISSN

      1001-1412  CN 12-1131/P

    渤海湾盆地石臼坨凸起新近系馆陶组低阻油层主控因素及识别方法

    Main Controlling Factors and Identification Methods of Low-Resistivity Oil Layers of Neogene Guantao Formation in the Shijiutuo Uplift, Bohai Bay Basin

    • 摘要: 近年来,渤海湾盆地石臼坨凸起新近系砂砾岩中发现大量低阻油层,由于成因认识不清,油水层差异较小,常规测井资料判别难度较大,制约了渤海湾盆地油气勘探。为认识该区油层低阻主控因素,综合运用岩心、压汞、薄片、测井等资料,系统分析低阻油层特征,利用统计学手段从岩石、流体两方面定量分析油水层低阻控制因素,依靠油水层电阻率大小与主控因素关系建立数学函数,从而实现对低阻油层有效判别。研究表明,该区低阻层为辫状河河道及心滩沉积,岩性以含砾砂岩、中细砂岩、粉砂岩为主,岩石成分成熟度低(平均为0.37)、孔喉非均质性强(均质系数为0.3)、黏土矿物含量高(平均为16 %);高黏土矿物含量、强孔喉非均质性导致岩石束缚水饱和度高(平均为45 %)。高束缚水饱和度是油层低阻的主控因素,基于束缚水饱和度与岩石电阻率呈指数负相关建立指数函数公式,将低阻油水层电阻率比值放大至1.6以上,从而可实现流体快速有效判别。本文研究成果能够利用测井电阻率资料对低阻油层进行识别,可供渤海湾盆地及国内外类似区块油气勘探提供借鉴。

       

      Abstract: In recent years, a large number of low-resistivity oil layers have been found in the glutenite of Shijiutuo Uplift in the central part of the Bohai Sea, and the oil and gas exploration potential is greatly restricted by the lack of clear causes, the small difference between the oil and water layers, and the difficulty of distinguishing conventional data. To clarify the main controlling factors for the low resistivity of the oil layer in this area and to distinguish them effectively and quickly, the characteristics of the low-resistivity oil layer are systematically analyzed using core, mercury injection, thin-section, and logging data. The low-resistivity control factors of the oil and water layers are quantitatively analyzed from the perspectives of rock and fluid using statistical methods, and a mathematical function is established to effectively distinguish the fluid based on the relationship between the resistivity of the oil and water layers and the main controlling factors. The results show that the low-resistivity layer in this area is characterized by braided-river channel and channel-bar deposits, and the lithology is mainly pebbly sandstone, medium-fine sandstone, and siltstone. The rock composition maturity is low (average 0.37), the pore throat heterogeneity is strong (homogeneity coefficient 0.3), and the clay mineral content is high (average 16 %). High clay mineral content and strong pore-throat heterogeneity led to a high irreducible water saturation in the rock (average 45 %). High irreducible water saturation is the main controlling factor of the low resistivity of the oil layer. Based on the exponential negative correlation between irreducible water saturation and rock resistivity, an exponential function is established to increase the resistivity ratio of the low-resistivity oil-water layer to more than 1.6, thereby enabling rapid and effective discrimination. The practical verification method is scientific and effective. The findings of this study enable the identification of low-resistivity oil zones using well-logging resistivity data, providing valuable references for assessing hydrocarbon exploration potential in the Bohai Sea and similar blocks worldwide.

       

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