Lithologic Reservoirs ›› 2009, Vol. 21 ›› Issue (2): 70-75.doi: 10.3969/j.issn.1673-8926.2009.02.014

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Sedimentary facies analysis of Cambrian-Ordovician in eastern Tarim Basin

HU Jiuzhen1,RAN Qigui2,LIU Shugen1,SUNWei1,WANG Dong3,ZHANG Changjun1   

  1. 1. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Chengdu University of Technology, Chengdu 610059, China; 2. Research Institute of Petroleum Exploration and Development-Langfang, Langfang 065007, China; 3. College of Earth Sciences, Chengdu University of Technology, Chengdu 610059, China
  • Online:2009-06-16 Published:2009-06-16

Abstract:

On the basis of sedimentary facies of single well, seimic data, as well as surface outcrop data,core observation,cutting logging and thin section analysis, the sedimentary facies in eastern Tarim Basin are defined, including abyssal facie, bathyal-contourite drift facies, near-shore deposits and carbonate platform. Several sub-facies and micro-facies are also recognized. Based on analysis of sedimentary microfacies, the sedimentary models, distribution and evolution in Early Cambrian-Middle Ordovician are analyzed. It is believed that plateau- basin model mainly developed in Early Cambrian in the east, and it is more obvious in Middle-Late Cambrian. Until Early-Middle Ordovician, the sedimentary facies in the study area is of typical trisection units, which are deep water aulacogen in middle part, carbonate platform and slope facies in the west and east. At the edge zone of platform and deep sea basin, reef flat reservoir developed, which is favorable for reservoir development. There also developed many types of diagenesis, and the destructive diagenesis is dominated one.

Key words: igneous rocks, logging, crossplot, Elemental Capture Spectroscopy logging, lithologic identification, Santanghu Basin

[ 1] 刘朝露,贾承造,夏斌,等. 塔东地区盆山耦合与油气成藏模式研究[ J ] . 天然气地球科学,2005,16(5) :552- 558 .
[ 2] 冯增昭,彭勇民,余振金,等. 中国寒武纪和奥陶纪岩相古地理[ M ] . 北京:石油工业出版社,2004 :1- 18 6.
[ 3] 何幼斌,高振中,罗顺社. 等深流沉积的特征及其鉴别标志[ J ] .江汉石油学院学报,1998 ,12(4 ) :1- 6.
[ 4 ] 罗顺社,何幼斌. 深水等深积岩丘及其含油气潜能[ J ] . 海相油气地质,2002,12(4 ) :8 - 12.
[ 5] 张月巧,贾进斗,靳久强,等. 塔东地区寒武— 奥陶系沉积相与沉积演化模式[ J ] . 天然气地球科学,2007,18 (2) :229- 234 .
[ 6] 孙枢,李继亮,王清晨. 继续重视坳拉槽(裂陷槽) 及成矿作用的研究[ J ] . 地质论评,1992,38 (2) :190- 193.
[ 7] 和政军. 关于坳拉槽[ J ] . 地质科技情报,1993,12(3) :8 - 12.
[ 8 ] 罗志立,张景廉,石兰亭. “ 塔里木— 扬子古大陆” 重建对无机成因油气的作用[ J ] . 岩性油气藏,2008 ,20( 1):124 - 128 .
9Graham R DLanghorne B S Jr. Structurally controlled hydrothermal dolomite reservoir faciesAn over reviewJ.AAPG Bulletin20069011):1641-1690.
[ 10] 刘树根,黄文明,张长俊. 四川盆地白云岩成因的研究现状及存在问题[ J ] . 岩性油气藏,2008 ,20( 2):6- 15.
[ 11] 胡九珍,刘树根,冉启贵,等. 塔东地区寒武系— 下奥陶统成岩作用特征及对优质储层形成的影响[ J ] . 成都理工大学学报( 自然科学版),2009,36( 2):138 - 14 6.
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