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首页> 外文期刊>Oceanographic Literature Review >A Study on Astronomical Cycle Identification and Environmental Response Characteristics of Lacustrine Deep-Water Fine-Grained Sedimentary Rocks: A Case Study of the Lower Submember of Member 3 of Shahejie Formation in Well Fanye-1 of Dongying Sag, Bohai Bay Basin, China
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A Study on Astronomical Cycle Identification and Environmental Response Characteristics of Lacustrine Deep-Water Fine-Grained Sedimentary Rocks: A Case Study of the Lower Submember of Member 3 of Shahejie Formation in Well Fanye-1 of Dongying Sag, Bohai Bay Basin, China

机译:湖泊深水细粒沉积岩天文循环识别及环境反应特征研究 - 以渤海湾盆地东营凹陷井福音1井中成员3的较低提交

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摘要

With the further exploration and development of shale oil and gas, cycle division of fine-grained sedimentary rock strata has been increasingly highly focused on by scholars. Owing to the application of the theory of classical sequence stratigraphy based on water depth changes and its technical methods being unsatisfactory in the isochronous division and correlation of deep-water fine-grained sedimentary strata, the cycle division of fine-grained sedimentary rock strata has always been a difficult point in the study of sequence stratigraphy. In this paper, the Milankovitch cycle recorded from the study interval and the environment response characteristics were studied, with the lacustrine shale in the lower third submember of the Paleogene Shahejie Formation (lower Es3 submember) in Well Fanye-1 of the Dongying sag, Bohai Bay Basin, as the object of study, by such technical means as thin section identification and X-ray whole rock diffraction, based on such data as logging data and geochemistry, combining the methods of spectral analysis, wavelet transform, and modulus extremum. The results showed that the stratigraphic cycle thicknesses caused by long eccentricity, short eccentricity, and obliquity periods were 38.95 m, 12.98 m, and 4.10 m, respectively, and a total of 16 short eccentricity periods and 4.5 long eccentricity periods were identified in the study interval. Thus, it was further calculated that the sedimentation time was approximately 1.905 Ma, and the average sedimentation rate was estimated to be 0.105 m/ka. Studies have shown that the sedimentary environment of lacustrine fine-grained sedimentary rocks is controlled by the astronomical period, based on which the climate as a whole changes from relatively dry and cold to warm and wet when the eccentricity increases. The identification of the Milankovitch cycle of the lacustrine fine-grained sedimentary strata will provide references for the study of high frequency sequence and the division of high-resolution sequence strata, which can effectively solve the scientifically difficult isochronous division and correlation of lacustrine shale strata.
机译:随着物流石油和天然气的进一步勘探和发展,精细沉积岩层的循环分工已经越来越高度专注于学者。由于应用了基于水深变化的经典序列地层理论及其技术方法在等时划分和深水细粒沉积地层的相关性,细粒沉积岩地层的循环分裂总是在序列地层研究中是一项难点。在本文中,研究了从研究间隔记录的米兰科科循环和环境响应特征,在古雄沙河街形成(较低的ES3提交)中的第三次提交中,渤海市古大街1号作为研究对象,通过这种技术手段作为薄剖面识别和X射线整体岩石衍射,基于伐木数据和地球化学,组合光谱分析,小波变换和模量极值的方法。结果表明,长偏心,短偏心和倾斜周期引起的地层循环厚度分别为38.95米,12.98m和4.10米,并在该研究中确定了16个短偏心时期和4.5个长的偏心时间间隔。因此,进一步计算出沉降时间约为1.905mA,估计平均沉降率为0.105米/ ka。研究表明,湖泊精细粒度沉积岩的沉积环境由天文期控制,基于该气候作为整个气候从相对干燥和寒冷的变化时变化,当偏心增加时。鉴定湖泊的细粒细粒沉积地层的米兰科科循环将为高频序列和高分辨率序列地层进行研究,可以有效地解决了科学困难的同步划分和湖泊物流层的相关性。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|1948-1949|共2页
  • 作者

    L. Yu; J. Peng; T. Xu;

  • 作者单位

    School of Geoscience and Technology Southwest Petroleum University Sichuan Chengdu 610500 China;

    School of Geoscience and Technology Southwest Petroleum University Sichuan Chengdu 610500 China;

    School of Geoscience and Technology Southwest Petroleum University Sichuan Chengdu 610500 China;

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