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    二连盆地吉尔嘎朗图凹陷白垩系页岩油储层特征及其对含油性的控制

    Characteristics of Cretaceous shale oil reservoirs and their control on oil content in the Jiergalangtu Sag, Erlian Basin

    • 摘要: 二连盆地吉尔嘎朗图凹陷具有丰富的页岩油气资源和巨大的勘探潜力,但其白垩系页岩油储层的含油性、孔隙结构特征及其控制机制目前尚不明确。文章综合采用总有机碳(TOC)、常规热解、分段热解、X射线衍射、扫描电镜、低温氮气吸附、高压压汞和一维/二维核磁共振等实验方法,系统揭示了二连盆地吉尔嘎朗图凹陷页岩油的储层特征,特别是含油性及全尺度孔-喉分布规律,并探讨了页岩含油性与物质组成、孔隙结构的耦合关系。结果表明,腾一下段页岩有机质丰度高,储集性能优于阿四段,其大孔隙(喉)更为发育,有利于页岩油的储集和流动;阿四段页岩因有机质丰度低且以微孔(喉)为主,储渗性能相对受限。孔喉发育受控于有机质丰度与黏土矿物含量的协同作用,其中腾一下段的高有机质丰度与低黏土矿物含量促进了大孔喉的发育,而阿四段的高有机质丰度反而抑制了孔喉的发育。页岩的含油性主要由有机质丰度、成熟度和孔隙结构共同决定,在阿四段页岩中表现得尤为显著。研究成果可为吉尔嘎朗图凹陷页岩油“甜点”预测提供关键参数支撑。

       

      Abstract: The Jiergalangtu Sag in the Erlian Basin is rich in shale oil and gas resources with significant exploration potential. However, the oil content, pore structure characteristics, and controlling mechanisms of its Cretaceous shale oil reservoirs remain unclear. By employing a combination of total organic carbon (TOC), conventional Rock-eval pyrolysis, multistage Rock-eval pyrolysis, X-ray diffraction, scanning electron microscopy, low-temperature nitrogen adsorption, high-pressure mercury injection, and one-dimensional/two-dimensional nuclear magnetic resonance (NMR), this study systematically reveals the oil content and full-scale pore-throat distribution characteristics of shale oil reservoirs, while exploring the coupling relationships between oil content, mineral composition, and pore structure. The results reveal that the shale in the lower first member of Tengger Formation (K1bt1) demonstrates higher organic matter abundance and superior storage properties compared to the fourth member of Aershan Formation (K1ba4). It features more developed large pores and throats, which enhance shale oil storage and flow. Conversely, the shale in the K1ba4 has lower organic matter abundance, with micropores and throats dominating, resulting in poorer storage and flow. The development of pores and throats is primarily influenced by TOC and clay mineral content. High TOC and low clay mineral content favor the formation of macropores and throats in the lower K1bt1, enhancing its storage and flow properties. However, higher TOC may inhibit the development of macropores and throats in the K1ba4. Shale oil content is jointly determined by TOC, maturity, and pore structure, with TOC being the most critical factor, particularly for the K1ba4. The research results provide an important basis for evaluating “sweet spots” in shale oil reservoirs within the Jiergalangtu Sag.

       

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