›› 2016, Vol. 37 ›› Issue (6): 1-1.doi: 10.7657/XJPG20160620

• 论文 •    

威利斯顿盆地和西墨西哥湾盆地致密油成藏差异

李倩1,卢双舫1a,李文浩1a,许思勇2,张晗1,胡莹1   

  1. (1.中国石油大学 a.非常规油气与新能源研究院;b.地球科学与技术学院,山东 青岛 266580;2.中国石油集团 测井有限公司 长庆事业部,陕西 高陵 710201)
  • 出版日期:2019-01-01 发布日期:1905-07-17

Hydrocarbon Accumulation Differences of Tight Oil between Williston Basin and Western Gulf of Mexico Basin

LI Qian1, LU Shuangfang1a, LI Wenhao1a, XU Siyong2, ZHANG Han1, HU Ying1   

  1. (1.China University of Petroleum a.Research Institute of Unconventional Hydrocarbon and Renewable Energy; b.School of Geosciences, Qingdao, Shangdong 266580, China; 2.Changqing Division, CNPC Logging, Gaoling, Shanxi 710201, China)
  • Online:2019-01-01 Published:1905-07-17

摘要: 在分析油气勘探相关资料的基础上,结合薄片鉴定和有机地球化学资料,探讨了威利斯顿盆地巴肯组和西墨西哥湾盆地鹰滩组泥页岩地质、地球化学特征,并剖析了巴肯组和鹰滩组油气成藏差异的原因。巴肯组和鹰滩组岩石组合的不同导致二者油气成藏方式存在差异,巴肯组以源外成藏为主,鹰滩组以源内成藏为主。巴肯组泥页岩生烃产生的超压大于鹰滩组,具有更大的排烃动力,有利于油气从泥页岩中排出,从而导致巴肯组泥页岩中滞留的油气较少,而鹰滩组泥页岩生成的油气大部分滞留在泥页岩内部。巴肯组中段物性优于上段和下段,而且连通孔隙更发育,孔喉更大,为油气主要赋存的层段;而鹰滩组泥页岩和灰岩中孔隙都较发育,这2类储集层都对烃类的储存有重要的贡献。巴肯组致密油藏和鹰滩组致密油藏均为连续型或准连续型油藏,巴肯组致密油藏主要以纵向运移为主,巴肯组中段致密储集层形成了大面积连续分布的致密油区,而鹰滩组致密油藏同时存在纵向运移和侧向运移,形成了纵向上泥页岩油藏和致密灰岩油藏互相叠置,具有源储一体、叠加连片的特点。

Abstract: Based on the analysis of petroleum exploration data combined with thin-section identification and organic geochemical data, the paper studies the geological and geochemical features of shales of Bakken formation in Williston basin and Eagle Ford formation in Western Gulf of Mexico basin, and analyzes the reason causing hydrocarbon accumulation differences between the two formations. Different rock associations result in the differences of hydrocarbon accumulation patterns between Bakken formation and Eagle Ford formation -- the former is dominated by outer-source accumulation and the latter by inner-source accumulation. The overpressure caused by hydrocarbon-generation in shales of Bakken formation is larger than that of Eagle Ford formation, which allows greater hydrocarbon expulsion forces and is helpful for oil and gas expulsion from the shales. Therefore, less oil and gas retain in shales of Bakken formation than that of Eagle Ford formation (with most oil and gas retaining in shales). The physical properties of middle Bakken formation are better than those of the upper and lower Bakken formations due to more developed connecting pores and larger pore throats, and the middle Bakken formation is the main interval for oil and gas occurrence. Shales and limestones in Eagle Ford formation with well developed pores contribute significantly to hydrocarbon storage. Tight oil reservoirs in both Bakken and Eagle Ford formations are continuous or quasi-continuous reservoirs. The tight oil reservoirs in Bakken formation mainly migrate vertically, leading to the formation of continuous large-area tight oil regions in the middle Bakken reservoir. Whereas, vertical and lateral migrations occur in Eagle Ford tight reservoirs, resulting in the overlapping of shales and tight limestones vertically, which could act as the source rock and reservoir simultaneously featured by interconnection and superimposition

中图分类号: