韩立杨,孙雨,张克鑫,等. 厄瓜多尔 Oriente 盆地白垩系Napo组LU亚段沉积模式[J]. 海洋地质前沿,2024,40(5):1-11. DOI: 10.16028/j.1009-2722.2023.030
    引用本文: 韩立杨,孙雨,张克鑫,等. 厄瓜多尔 Oriente 盆地白垩系Napo组LU亚段沉积模式[J]. 海洋地质前沿,2024,40(5):1-11. DOI: 10.16028/j.1009-2722.2023.030
    HAN Liyang, SUN Yu, ZHANG Kexin, et al. The sedimentary model of the LU Sub-member of Cretaceous Napo Formation in Oriente Basin, Ecuador[J]. Marine Geology Frontiers, 2024, 40(5): 1-11. DOI: 10.16028/j.1009-2722.2023.030
    Citation: HAN Liyang, SUN Yu, ZHANG Kexin, et al. The sedimentary model of the LU Sub-member of Cretaceous Napo Formation in Oriente Basin, Ecuador[J]. Marine Geology Frontiers, 2024, 40(5): 1-11. DOI: 10.16028/j.1009-2722.2023.030

    厄瓜多尔 Oriente 盆地白垩系Napo组LU亚段沉积模式

    The sedimentary model of the LU Sub-member of Cretaceous Napo Formation in Oriente Basin, Ecuador

    • 摘要: 厄瓜多尔 Oriente 盆地北部白垩系Napo组LU亚段地层油气资源极其丰富,具有较大的油气勘探潜力,由于目前对LU亚段地层沉积模式认识不清晰,极大程度上限制了研究区进一步勘探开发。依据LU亚段岩芯观察、测井、成熟度分析以及镜下薄片等资料,通过岩芯岩性、结构等岩石学特征,沉积构造、生物遗迹化石、沉积韵律等沉积学特征,以及测井相标志认为,研究区LU亚段地层发育于潮汐作用为主的海陆过渡环境,并在前人研究基础上提出潮控河口湾与陆棚之间存在过渡带沉积,形成了潮控河口湾-过渡带-陆棚沉积体系,识别出潮汐水道、潮汐砂坝、砂坪、海绿石砂席、混合坪、陆棚泥和灰质滩共7种沉积微相,其中,优势储层相带为潮汐水道和潮汐砂坝,砂坪次之。建立研究区潮控河口湾-过渡带-陆棚沉积模式,以期对Oriente盆地白垩系Napo组油气勘探提供有利的科学依据。

       

      Abstract: The LU Sub-member (LUSM) of the Cretaceous Napo Formation in the northern part of Oriente Basin, Ecuador, is extremely rich in hydrocarbon resources and has a large potential for hydrocarbon exploration. However, the depositional pattern of the LUSM remains poorly understood, which had largely limited the further exploration and development of the area. Based on the core observation, logging, maturity analysis, and thin-section study, the petrological and sedimentary features were described; the biological relics and fossils, sedimentary structure and rhythm, and the logging phase signatures were analyzed. Results show that the LUSM strata were developed in a transitional environment between sea and land, in which tidal action was dominated. Referring to previous studies, we proposed that there was a transitional zone between tide-dominated estuary and a continental shelf, forming a tide-dominated estuary - transitional zone - continental shelf sedimentary system, showing seven sedimentary microfacies: tidal channel, tidal sand bar, sand flat, glauconite sand sheet, mixed flat, shelf mud, and calcareous beach. Among them, the tidal channel and tidal sand bar are sweet reservoir facies, followed by sand flat. By analyzing the depositional system, a tidal-dominated estuarine - transition zone - shelf depositional model was established for the study area. This study provided a favorable scientific basis for oil and gas exploration in the Cretaceous Napo Formation in the Oriente Basin.

       

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