天然气地质学

柴达木盆地西部尕斯库勒油田油气成藏动力学特征

展开
  • 1. 中国科学院地质与地球物理研究所油气资源研究重点实验室,甘肃 兰州 730000;
    2.青海油田分公司勘探开发研究院,甘肃 敦煌 736202

收稿日期: 2009-03-15

  修回日期: 2009-04-22

  网络出版日期: 2009-06-10

基金资助

国家自然科学基金项目(编号:40872092,40772069);国家重点基础研究发展规划项目(编号:2005CB422105)联合资助.

Pool-forming Dynamic Characteristics of Gasqule Oilfield in Western Qaidam Basin

Expand
  • 1. Key Laboratory of Petroleum Resources Research, Institute of Geology and Geophysics, Chinese Academy of Sciences, Lanzhou 730000, China;2.Research Institute of Petroleum Exploration and Development,PetroChina Qinghai Petroleum Company, Dunhuang 736200, China

Received date: 2009-03-15

  Revised date: 2009-04-22

  Online published: 2009-06-10

摘要

成藏动力学是石油地质学研究的热点领域,它以油气成藏的动力学机制和动力学过程为核心,探讨油气聚集和分布规律。尕斯库勒油田位于柴达木盆地西部,是柴达木盆地最大的油田。应用成藏动力学原理,研究了该油田油气成藏动力学条件和过程,探讨了成藏动力学机制;在纵向上比较典型地划分出他源常压开放次生成藏动力学系统、他源常压开放原生成藏动力学系统、自源高压封闭原生成藏动力学系统和混源高压封闭原生成藏动力学系统;并且指出混源高压封闭原生成藏动力学系统中的E13层系和他源常压开放原生成藏动力学系统中的N21—N12层系为今后进一步主要勘探的目标层系。

本文引用格式

段毅, 孙涛, 吴保祥, 彭德华, 于文修 . 柴达木盆地西部尕斯库勒油田油气成藏动力学特征[J]. 天然气地球科学, 2009 , 20(3) : 309 -315 . DOI: 10.11764/j.issn.1672-1926.2009.03.309

Abstract

Oil pool-forming dynamic method is to understand the accumulation distribution rule of oil and gas by studying the pool-forming dynamic mechanism and process. Gasqule oilfield is the largest one in the Qaidam Basin. The pool forming dynamic conditions and process of Gasqule oilfield were studied, and the pool-forming dynamic mechanism was discussed according to the pool-forming dynamic principle. The studied region was vertically divided into four pool-forming dynamic systems including outward sourced, normal pressure open secondary dynamic system; outward-sourced, normal-pressure open primary dynamic system; self sourced, high pressure sealed primary dynamic system; and mix-sourced, high-pressure sealed primary dynamic system. The further exploration should be focused on the E13 layer in the mix-sourced, high-pressure sealed primary dynamic system, and the N21—N12 layer in the outward sourced normal pressure open primary dynamic system.

参考文献

 [1]田世澄,毕研鹏.论成藏动力学系统[M].北京:地质出版社,2000:3-20.

 [2]褚庆忠,张树. 含油气成藏动力学研究综述[J]. 世界地质, 2002, 21(1): 24-29.

 [3]段毅,彭德华,张晓宝,等. 柴达木盆地原油碳同位素组成的主控因素与成因类型[J]. 沉积学报,2003,21(2):355-3359.

 [4]Duan Yi. Organic geochemistry of recent marine sediment from Nansha Sea,China[J]. Organic Geochemistry,  2000,(2/3): 159-167.

 [5]Moldowan J M, Seifert W K, Gallegos E J. Relationship between petroleum composition and depositional environment of petroleum source rocks [J]. AAPG Bulletin, 1985, 69: 1255-1268.

 [6]段毅,张辉,王智平,等. 柴达木盆地原油烃类地球化学特征[J]. 石油实验地质, 2004, 26 (4):359-364.

 [7]Duan Yi, Zheng Chaoyang, Wang Zhiping,et al. Biomarker geochemistry of crude oils from Qaidam basin, northwestern China[J]. J.Petrol. Geol., 2006, 29(2):175-188.

 [8]朱扬明,苏爱国,梁狄刚,等.柴达木盆地咸湖相生油岩正构烷烃分布特征及其成因[J].地球化学, 2003,32(2):117-123.

 [9]Hunt J M. Generation and migration of petroleum from abnormally pressured fluid compartment [J]. AAPG Bulletin, 1990, 74(1): 1-12.

[10]段毅,郑朝阳,张辉,等.柴达木盆地尕斯库勒油田原油含氮化合物分布特征与油气运移[J].天然气工业,2004, 24 (11):26-28.

[11]邱楠生. 柴达木盆地西部地区第三系温度压力和油气分布相互关系探讨[J]. 地球物理学报, 1999, 42 (6): 826-833.

[12]赵靖舟, 时保宏, 罗继红.论成藏动力系统的划分方法[J] .天然气地球科学,2003,14(6):429-435.

文章导航

/

〈 〉