石油学报 ›› 2021, Vol. 42 ›› Issue (12): 1566-1580.DOI: 10.7623/syxb202112003

• 地质勘探 • 上一篇    下一篇

塔里木盆地深层海相轻质油/凝析油的成因机制与控制因素

张水昌, 苏劲, 张斌, 王晓梅, 何坤   

  1. 中国石油勘探开发研究院 北京 100083
  • 收稿日期:2021-08-17 修回日期:2021-11-14 出版日期:2021-12-25 发布日期:2021-12-30
  • 通讯作者: 张水昌,男,1961年11月生,1983年获成都理工大学学士学位,1991年获中国地质大学(北京)博士学位,现为中国石油勘探开发研究院教授级高级工程师、中国石油天然气集团有限公司油气地球化学重点实验室主任,长期从事石油地质与地球化学方面的研究。
  • 作者简介:张水昌,男,1961年11月生,1983年获成都理工大学学士学位,1991年获中国地质大学(北京)博士学位,现为中国石油勘探开发研究院教授级高级工程师、中国石油天然气集团有限公司油气地球化学重点实验室主任,长期从事石油地质与地球化学方面的研究。Email:sczhang@petrochina.com.cn
  • 基金资助:
    中国科学院先导A智能导钻专项课题"盆地深层烃源岩发育与分布预测"(XDA14010101)和国家重点研发计划项目"超深层及中新元古界油气保持机制与资源潜力"(2017YFC0603101)资助。

Genetic mechanism and controlling factors of deep marine light oil and condensate oil in Tarim Basin

Zhang Shuichang, Su Jin, Zhang Bin, Wang Xiaomei, He Kun   

  1. PetroChina Research Institute of Petroleum Exploration and Development, Beijing 100083, China
  • Received:2021-08-17 Revised:2021-11-14 Online:2021-12-25 Published:2021-12-30

摘要: 塔里木盆地是中国蕴含丰富海相凝析油的克拉通含油气盆地,目前已在塔北隆起、塔中隆起及其斜坡区的震旦系—三叠系发现6个大型海相凝析油气藏,这些油气藏呈现出轻质油、高含蜡凝析油气、干气—轻质油—挥发性油多种类型油气藏围绕烃源岩有序聚集的特点。基于烷烃损失量计算、凝析油中烃类分子成熟度参数和天然气同位素组成的分析,提出塔北隆起满深—顺北地区轻质油和塔中隆起西部地区凝析油气藏是烃源岩在高成熟度演化阶段的产物,明确轮古东—吉拉克—桑塔木地区和塔中东段凝析油气藏是气洗分馏作用的产物。多套烃源岩差异生烃形成多期油气充注是塔里木盆地海相凝析油气藏的物质基础;晚期天然气对早期油藏的改造,导致液态烃组分与天然气发生溶解-解溶作用;构造抬升或断裂活动导致的地层温度和压力条件改变,决定了油气藏的相态。叠合盆地的多期构造活动、多源灶的多阶段供烃以及盆地在晚期的持续深埋作用,共同控制了塔里木盆地海相轻质油和凝析油气藏的富集和分布。气洗分馏作用机制不仅可为叠合盆地拓展轻质油/凝析油勘探领域提供新思路,也有助于预测盆地深层斜坡区油气的物理性质、评价深层天然气的勘探潜力。

关键词: 凝析油气藏, 轻质油, 气洗分馏作用, 天然气潜力, 深层勘探, 塔里木盆地

Abstract: Tarim Basin is an oil-gas bearing craton basin rich in marine condensate oil in China. At present, six sets of large marine condensate reservoirs have been found in Sinian-Triassic formations in north Tarim uplift, middle Tarim uplift and their slope areas. These reservoirs are characterized by orderly accumulation of light oil, high-wax condensate, and dry gas, light oil and volatile oil reservoirs around source rocks. Based on calculation of alkane loss and analysis of the hydrocarbon molecular maturity in condensate oil and the gas isotopic composition, it is proposed that the light oil in the Manshen-Shunbei area of Tabei uplift and the condensate reservoir in the west of Tazhong uplift are the products of source rocks in the high-maturity evolution stage, it is further clarified that gas-washing fractionation is the main genetic mechanism of marine condensate reservoirs in Lungudong-Jilake-Sangtamu area and eastern Tazhong area. The multi-stage hydrocarbon charging caused by differential hydrocarbon generation from multiple sets of source rocks provides the material basis for the accumulation of marine condensate oil reservoirs in Tarim Basin. The alteration of early reservoir by late natural gas results in solution and dissolution of liquid hydrocarbon components and natural gas. The changes of formation temperature and pressure caused by tectonic uplift or fault activity dominate the phase state of oil and gas reservoirs. The multi-stage tectonic activities of superimposed basin, multi-stage hydrocarbon charging from multi-source kitchen and the continuous deep burial of the basin in the late stage jointly control the enrichment and distribution of marine light oil and condensate reservoirs in Tarim Basin. The mechanism of gas-washing fractionation can not only provide a new idea for expanding the field of light oil and condensate oil exploration in the superimposed basin, but also help to predict the physical properties of oil and gas in the deep slope area of the basin and evaluate the exploration potential of deep natural gas.

Key words: condensate reservoir, light oil, gas-washing fractionation, natural gas potential, deep exploration, Tarim Basin

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