Lithologic Reservoirs ›› 2009, Vol. 21 ›› Issue (1): 15-21.doi: 10.3969/j.issn.1673-8926.2009.01.004

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Reef and shoal facies reservoir prediction of Changxing Formation in eastern Sichuan and northern Chongqing

ZHOU Gang1,ZHENG Rongcai1,WANG Jiong2,LI Yu3,WEN Qibing3,XU Fabo3   

  1. 1. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Chengdu University of Technology, Chengdu 610059, China; 2. School of Petroleum Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; 3. Chongqing Gas District, CNPC Southwest Oil and Gas Company, Chongqing 400021, China
  • Online:2009-03-16 Published:2009-03-16

Abstract:

There are four sedimentary facies developed in Changxing Formation in eastern Sichuan and northern Chongqing, including intraplatform trough (deep water basin), platform slope, platform margin reef flat and open platform. Reef and shoal facies reservoir located in Kaijiang-Liangping intraplatform trough is the most important layers for oil and gas exploration. Crystal dolomite is the main lithology of reef and shoal facies reservoir, with wide area of distribution, great thickness and good physical property. Based on the analyses of sedimentary facies, logging facies and seismic facies, the geological model of the reef and shoal facies reservoir is established through the known rock- electricity transform pattern and logging response and the analysis of seismic reflection characteristics and geology property of reef and shoal. The obvious chimney effect on reef and shoal reservoir is defined. Based on the geological model established as the seismic inversion constraint, combined with regional geological information, the favorable zones of reef and shoal reservoir and dolomite distribution are predicted.

Key words: sedimentary microfacies, sand body assemblages, classification, prediction, evaluation, the second member of Shanxi Formation, the eighth member of Shihezi Formation, Ordos Basin

[1] 吴熙纯,刘效曾,杨仲伦,等.川东上二叠统长兴组生物礁控储层的形成[J].石油与天然气地质,1990,11(3):283-296.
[2] 王生海,强子同.四川华蓥山涧水沟上二叠统生物礁[J].石油与天然气地质,1992,12(2):147-154.
[3] 范嘉松,吴亚生.川东二叠纪生物礁再认识[J].石油与天然气地质,2002,23(1):12-18.
[4] 王一刚,张静,杨雨,等.四川盆地东部上二叠统长兴组生物礁气藏形成机理[J].海相油气地质,1997,5(1):145-152.
[5] 王一刚,文应初,张帆.川东地区上二叠统长兴组生物礁分布规律[J].天然气工业,1998,18(6):10-15.
[6] 牟传龙,谭钦银,余谦,等.川东北地区上二叠统长兴组生物礁组成及成礁模式[J].沉积与特提斯地质,2004,24(3):65-71.
[7] 牟传龙,马永生,余谦,等.四川宣汉盘龙洞生物礁古油气藏油气源分析[J].石油实验地质,2005,27(6):570-574.
[8] 马永生,牟传龙,郭彤楼.四川盆地东北部长兴组层序地层与储层分布[J].地学前缘,2005,12(3):179-185.
[9] 马永生,牟传龙,郭旭升,等.川东北地区长兴组沉积特征与沉积格局[J].地质论评,2006,52(1):25-29.
[10] 王瑞华,牟传龙,谭钦银,等.达县—宣汉地区长兴组礁滩白云岩成岩作用与成岩环境研究[J].沉积与特提斯地质,2006,26(1):30-36.
[11] 耿威,郑荣才,李爽,等.开江—梁平台内海槽东段长兴组礁、滩相储层特征[J].成都理工大学学报,2008,35(6):639-647.
[12] 李国军,郑荣才,唐玉林,等.川东北地区飞仙关组层序-岩相古地理特征[J].岩性油气藏,2007,19(4):64-70.
[13] 姜在兴.沉积学[M].北京:石油工业出版社,2003:404-420.
[14] 郑荣才,胡忠贵,冯青平,等.川东北地区长兴组白云岩储层的成因研究[J].矿物岩石,2007,27(4):78-84.
[15] 郑荣才,史建南,罗爱君,等.川东北地区飞仙关组与长兴组白云岩储层地球化学特征对比研究[J].天然气工业,2008,28(11):16-21.
[16] Davies G R,Smith L B. Structurally controlled hydrothermal dolomite reservoir facies:An overview[J]. AAPG Bulletin,2006,90 (11):1 641-1 690.
[17] 蒋晓光,彭大钧,陈季高,等.滨里海盆地东缘生物礁预测研究[J].成都理工大学学报,2005,32(5):492-497.
[18] 陈劲人,银玉光.建南气田长兴组生物礁气藏的勘探实践[J].石油勘探与开发,1981,10(2):27-33.
[19] 刘划一,王一刚,杨雨,等.川东上二叠统生物礁气藏多元信息综合预测方法研究[J].天然气工业,1999,19(4):13-18.
[20] Aminzhadeh F.将气囱作为一种勘探工具[J].陆光辉编译.石油勘探开发情报,2001,(6):22-32.
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