李章鹏,梁杰,李森,等. 中新世以来上印度扇水道−堤岸体系几何学特征及演化[J]. 海洋地质与第四纪地质,2024,44(1): 30-43. doi: 10.16562/j.cnki.0256-1492.2022122201
引用本文: 李章鹏,梁杰,李森,等. 中新世以来上印度扇水道−堤岸体系几何学特征及演化[J]. 海洋地质与第四纪地质,2024,44(1): 30-43. doi: 10.16562/j.cnki.0256-1492.2022122201
LI Zhangpeng,LIANG Jie,LI Sen,et al. Geometric characteristics and evolution of channel-levee system in Upper India Fan since the Miocene[J]. Marine Geology & Quaternary Geology,2024,44(1):30-43. doi: 10.16562/j.cnki.0256-1492.2022122201
Citation: LI Zhangpeng,LIANG Jie,LI Sen,et al. Geometric characteristics and evolution of channel-levee system in Upper India Fan since the Miocene[J]. Marine Geology & Quaternary Geology,2024,44(1):30-43. doi: 10.16562/j.cnki.0256-1492.2022122201

中新世以来上印度扇水道−堤岸体系几何学特征及演化

Geometric characteristics and evolution of channel-levee system in Upper India Fan since the Miocene

  • 摘要: 以中新世以来上印度扇水道−堤岸体系为研究对象,利用高精度二维地震资料开展地震精细解释与几何学分析,刻画水道−堤岸体系几何学特征及时空演化过程,探讨中新世以来上印度扇发育演化主要期次及特征。结果表明,中新世以来上印度扇水道−堤岸体系可划分为中新世、上新世及更新世至今三大期次,整体表现出“单期水道-侧向迁移-扁长型”到“多期水道-垂向叠置-厚窄型”的演化特征。深入探讨中新世以来上印度扇水道−堤岸体系的几何学特征及演化可为重力流水道的沉积构型样式研究提供新的例证,并为深海油气勘探开发提供参考。

     

    Abstract: Taking the Miocene Upper Indian fan channel-levee system as the research object, we used high-precision two-dimensional seismic data to carry out seismic fine interpretation and geometric analysis, depicted the geometric characteristics of the channel-levee system and the spatio-temporal evolution process, and discussed the main stages and characteristics of the development and evolution of the Miocene Upper Indian fan. Results show that the Miocene Upper India fan channel-levee system can be divided into three developmental phases: the Miocene, the Pliocene, and the Pleistocene to present. The channel-levee system evolved from “single-phase channel–lateral migration–flat type” to “multi-phase channel–vertical stacking–thick-narrow type”.An in-depth discussion of the geometric characteristics and evolution of channel-levee system in Upper India Fan since the Miocene can provide new examples for the study of the sedimentary architecture of gravity flow channels, and provide reference for deep-sea oil and gas exploration and development.

     

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