Journal of Petrochemical Universities

Journal of Petrochemical Universities ›› 2019, Vol. 32 ›› Issue (2): 51-58.DOI: 10.3969/j.issn.1006-396X.2019.02.009

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Relationship between Geothermal⁃Geopressure System and Hydrocarbon Distribution in North Part of Dongpu Depression

Xin FenglongJiang YouluLiu JingdongSun BoJing Chen   

  1. (School of Geoscience, China University of Petroleum(East China), Qingdao Shandong 266580, China)
  • Received:2018-04-28 Revised:2018-05-29 Published:2019-05-01 Online:2019-05-08

东濮凹陷北部地区温压系统与油气分布的关系

信凤龙蒋有录刘景东孙波景琛   

  1. (中国石油大学(华东) 地球科学与技术学院,山东 青岛 266580)
  • 通讯作者: 蒋有录(1959⁃),男,教授,博士,博士生导师,从事油气地质及勘探方面研究;E⁃mail:jiangyl@upc.edu.cn。
  • 作者简介:信凤龙(1991-),男,硕士研究生,从事油气地质与勘探开放方面研究;E?mail:s15010112@s.upc.edu.cn。
  • 基金资助:
    国家重大科技专项(2016ZX05006-003)。

Abstract:  In view of the weak research on the characteristics of geotemperature⁃pressure system in the northern part of Dongpu Depression, based on the measurements of ground temperature and pressure, the characteristics of geotemperature field, geopressure field and temperature⁃pressure system in the northern part of Dongpu depression are analyzed by T⁃P system theory. Combined with the structure distribution pattern, their effects on hydrocarbon distribution have been analyzed. The study demonstrates that the temperature gradient in north part of Dongpu depression is high, the sag zone has the characteristics of deep buried and high geotemperature, which is beneficial to the maturity of source rocks and the formation of hydrocarbon in the sag zone. The deep overpressure could be as the important motivating force for hydrocarbon migration. In vertical, the T⁃P system includes static pressure geothermal⁃geopressure system and overpressure complex geothermal⁃geopressure system. The lateral T⁃P system can be divided into 5 subareas, namely, HTHP, NTHP, HTNP, NTNP and LTNP, and the low⁃energy NTNP is the place where petroleum mainly accumulates. Different from other hydrocarbon rich depressions in the Bohai bay bain, due to the development of gypsum⁃salt cap rock, a large amount of hydrocarbon has accumulated in the high⁃energy NTHP.

Key words: Temperature field, Pressure field, Temperature?pressure system, Hydrocarbon distribution, Dongpu depression

摘要:  针对东濮凹陷北部地区地温-地压系统特征研究薄弱的问题,基于东濮凹陷北部地区地温和地压实测数据,应用地温⁃地压系统原理分析了东濮凹陷北部地区地温场、地压场及温-压系统特征,并结合构造格局分析了它们对油气分布的影响。研究表明,东濮凹陷北部地区地温梯度总体较高,洼陷带具有埋藏深、地温高的特点。纵向上发育常压型温压系统和高压型复式温压系统。平面上可划分为高温高压、常温高压、高温常压、常温常压和低温常压5个分区,油气主要富集于能量低的常温常压区;与渤海湾盆地其它凹陷油气富集区不同,由于东濮凹陷北部地区膏盐盖层发育,从而在能量高的常温高压区也聚集了大量油气。

关键词: 地温场, 地压场, 温压系统, 油气分布, 东濮凹陷

Cite this article

Xin Fenglong,Jiang Youlu,Liu Jingdong,Sun Bo,Jing Chen. Relationship between Geothermal⁃Geopressure System and Hydrocarbon Distribution in North Part of Dongpu Depression[J]. Journal of Petrochemical Universities, 2019, 32(2): 51-58.

信凤龙,蒋有录,刘景东,孙波,景琛. 东濮凹陷北部地区温压系统与油气分布的关系[J]. 石油化工高等学校学报, 2019, 32(2): 51-58.