石油学报 ›› 2000, Vol. 21 ›› Issue (4): 13-19.DOI: 10.7623/syxb200004003

• 地质勘探 • 上一篇    下一篇

额济纳旗地区侏罗—白垩纪盆地演化与油气特征

靳久强1, 张研2, 许大丰1, 孟庆任1   

  1. 1. 中国石油勘探开发研究院 北京100083;
    2. 中国科学院地球物理研究所 北京100101
  • 收稿日期:2000-02-16 修回日期:2000-04-12 出版日期:2000-07-25 发布日期:2010-05-21
  • 作者简介:靳久强,男,1957年9月生.1982年毕业于西北大学地质系,1994年获德国图宾根大学博士学位.现为中国石油勘探开发研究院地质所主任地质师.

EVOLUTION AND HYDROCARBON FEATURES OF THE JURASSIC AND CRETACEOUS BASINS, EJINAQI

JIN Jiu-qiang1   

  1. Research Institute of Petroleum Exploration and Development, Beijing 100083, China
  • Received:2000-02-16 Revised:2000-04-12 Online:2000-07-25 Published:2010-05-21

摘要: 额济纳旗地区侏罗纪以来经历了两期断陷盆地的发育。早—中侏罗世研究区处于一种张扭构造环境之中,晚侏罗世盆地发生明显抬升和反转。日垩纪—早第三纪盆地演化为一个完整的裂谷发育过程,下白垩统是裂谷早期断陷作用的产物,而上白垩统和下第三系则代表裂谷后期热沉降(或区域坳陷)沉积。侏罗纪盆地和白垩纪盆地应属两类不同性质盆地。两期盆地的不同叠置关系控制了本区烃源岩的发育,影响到这一地区坳陷的油气潜力。下白垩统烃原岩为较差—较好烃源岩,中—下侏罗统为好烃源岩。各凹陷的生烃潜力取决于两期生烃洼陷的规模和叠置关系,天草凹陷继承性发育,中—下侏罗统和下白垩统两套烃源岩叠置关系较好,是额济纳旗地区最有远景的凹陷。

关键词: 原型盆地, 张扭断陷, 裂谷盆地, 盆地反转, 盆地叠加, 生烃洼陷叠置

Abstract: Two periods of rifting basins had developed in the Ejinaqi region since the Jurassic. The study area was in a tectonic setting of transtension during Early and Middle Jurassic, and the basins were reversed and uplifted in Late Jurassic. The basin evolution from the Cretaceous to the Palaeogene shows a complete process of rifting development, in which the Lower Cretaceous is the product of early rifting and the Upper Cretaceous and the Eogene represent the sediments of thermal subsidence in late rifting stage. The Jurassic and Cretaceous basins belong to two different types of basin. The superimposition styles of the two types of basins controlled the source rock development and have an impact on the hydrocarbon potential in this region. The source rocks in the Lower and Middle Jurassic are good and better than those in the Lower Cretaceous. The hydrocarbon-generation potential of depressions was determined by the scale and superimposition of two hydrocarbon-generation sags. Tiancao depression is the most perspective area where the sag developed successively and the Lower-Middle Jurassic and the Lower Cretaceous source rocks have a good superimposition.

Key words: Proto-basin, transtensional faulting, rifting basin, basin inversion, basin superimposition, hydrocarbon-generation sag superimposition

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