塔里木盆地沙井子构造带寒武系—志留系油气地质条件与成藏模式

    The Cambrian-Silurian petroleum geological condition and accumulation model of Shajingzi structural belt in Tarim Basin

    • 摘要: 沙井子构造带地处塔里木盆地西北缘柯坪断隆与阿瓦提凹陷的过渡带,是该区下古生界油气勘探的关键领域。针对寒武系—志留系油气来源不清、储盖有效性不明及成藏过程复杂等问题,综合运用岩心观察、地球化学测试及二维盆地模拟等技术手段,对该构造带下古生界的油气地质条件及成藏演化过程进行系统剖析。研究结果表明: ①下古生界发育两套有效烃源岩,下寒武统玉尔吐斯组为优质主力生烃层,中—上奥陶统萨尔干组为重要补充,母质以I-II型干酪根为主; ②志留系柯坪塔格组砂岩及奥陶系碳酸盐岩构成裂缝-孔隙型有效储层,志留系依木干他乌组泥岩及寒武系阿瓦塔格组膏盐岩提供区域性优质封盖; ③成藏演化模拟揭示了“早期(加里东晚期—海西早期)生油、晚期(海西中期及之后)原油裂解生气”的演化过程。确立了沙井子构造带“双源供烃、断裂输导、热液耦合、早油晚气”的复合油气成藏模式。研究成果揭示了该区“深部原位成气、浅部断裂输导聚气”的天然气主导格局,指出靠近深大断裂带的低幅度凸起及喜马拉雅期构造抬升区是深层-中浅层天然气勘探的有利区,对塔里木盆地西北缘深层油气勘探部署具有指导意义。

       

      Abstract: Shajingzi structural belt is located in the transition zone between Keping fault-uplift and Awati sag in the northwestern margin of Tarim Basin, as a key area for the Lower Paleozoic hydrocarbon exploration. In order to slove several problems, including ambiguous hydrocarbon sources, uncertain effectiveness of reservoirs and caprocks, and complex accumulation processes in the Cambrian-Silurian strata, by integrating core observation, geochemical analyses, and 2D basin modeling, the authors analyzed the petroleum geological conditions and accumulation evolution of the Lower Paleozoic in this structural belt. The results showed that two sets of effective source rocks were developed in the Lower Paleozoic. The Lower Cambrian Yu'ertusi Formation served as the high-quality main hydrocarbon-generating layer, and the Middle-Upper Ordovician Saergan Formation acted as an important supplement, with the original kerogen predominantly being Type I-II. The sandstones of the Silurian Kepingtage Formation and the Ordovician carbonates constitute effective fracture-pore reservoirs, while the mudstones of the Silurian Yimugantawu Formation and the gypsum-salt rocks of the Cambrian Awatage Formation provided regional high-quality seals. The accumulation evolution modeling revealed a process of "early oil generation (the Late Caledonian to the Early Hercynian) and late gas generation via oil cracking (the Middle Hercynian and thereafter)". A composite hydrocarbon accumulation model of "dual-source hydrocarbon supply, fault-conduit migration, hydrothermal coupling, early oil and late gas" was established for Shajingzi structural belt. The study revealed a natural gas-dominated pattern characterized by "deep in-situ gas generation and shallow fault-migrated gas accumulation". It indicates that the low-amplitude uplifts near deep large fault zones and Himalayan tectonic uplift regions are favorable targets for deep to mid-shallow natural gas exploration, which has guiding implications for the deployment of deep hydrocarbon exploration in the northwestern margin of Tarim Basin.

       

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