Journal of Jilin University(Earth Science Edition) ›› 2020, Vol. 50 ›› Issue (2): 442-453.doi: 10.13278/j.cnki.jjuese.20190268
Previous Articles Next Articles
Wang Jiangong1,2, Zhang Daowei3, Shi Yajun1, Zhang Ping1, Sun XiuJian1, Wang Aiping1, Wang Yulin1, Gao Yanfang1, Zhang Shiming1, Yi Dinghong1
CLC Number:
[1] Boh Sedimentary acs K M, Carroll A R, Neal J E, et al. Lake-Basin Type, Source Potential, and Hydrocarbon Character:An Integrated-Sequence-Stratigraphic-Geochemical Framework[C]//Gierlowski-Kordesch E H, Kelts K R. Lake Basin Through Space and Time. Tulsa:AAPG, 2000:3-34. [2] Platt N H, Wright V P. Lacustrine Carbonates:Facies Models, Facies Distributions and Hydrocarbon Aspects[C]//Anadon P, Cabrera L, Kelts K. Lacustrine Facies Analysis. Oxford:Blackwell Publishing Ltd, 1991:57-74. [3] Carozzi A V. Observation on Algal Biostromes in the Great Salt Lake, Utah[J]. Journal of Geology, 1962, 70:246-252. [4] Halley R B. Ooid Fabric and Fracture in the Great Salt Lake and the Geologic Record[J]. Journal of Sedimentary Petrology, 1977, 47:1099-1120. [5] Pedone V A, Fork R L. Formation of Aragonite Cement by Nannobacteria in the Great Salt Lake, Utah[J]. Geology, 1996, 24:763-765. [6] Cohen A,Thouin C. Nearshore Carbonate Deposits in Lake Tanganyika[J]. Geology, 1987, 15:414-418. [7] Casanova J,Hillaire-Marcel C. Late Holocene Hydrological History of Lake Tanganyika, East Africa, from Isotopic Data on Fossil Stromatolites[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 1992, 91:35-48. [8] Tiercelin J J, Soreghan M, Cohen A S, et al. Sedimentation in Large Rift Lakes:Example from the Middle Pleistocene-Modern Deposits of the Tanganyika Trough, East African Rift System[J]. Bulletin Des Centres De Researches Exploration-Production Elf-Aquitaine, 1992, 16(1):83-111. [9] Cohen A S, Talbot M R,Awramik S M, et al. Lake Level and Paleoenvironmental History of Lake Tanganyika, as Inferred from Late Holocene and Moder Stromatolites[J]. Geological Society of America Bulletin, 1997, 109:444-460. [10] Rouchy J M, Servant M, Fournier M, et al. Extensive Carbonate Algal Bioherms in Upper Pleistocene Saline Lakes of the Central Altiplano of Bolivia[J]. Sedimentology, 1996, 43:973-993. [11] Camoin G, Casanova J, Rouchy J M, et al. Environmental Controls on Perennial and Ephemeral Carbonate Lakes:The Central Palaeo-Andean Basin of Bolivia During Late Cretaceous to Early Tertiary Times[J]. Sedimentary Geology, 1997, 113:1-26. [12] Palma R M. Lacustrine Facies in the Upper Cretaceous Balbuena Subgroup (Salta Group):Andina Basin, Argentina[C]//Gierlowski-Kordesch E H, Kelts K R. Lake Basins Through Space and Time. Geology:AAPG, 2000:323-328. [13] Link M H, Osborne R H,Awramik S M, et al. Lacustrine Stromatolites and Associated Sediments of the Pliocene Ridge Route Formation, Ridge Basin, California[J]. Journal of Sedimentary Petrology, 1978, 48:143-158. [14] Benson L V. Carbonate Deposition, Pyramid LakeSubbasin, Nevada:1:Sequence of Formation and Elevational Distribution of Carbonate Deposits (Tufas)[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 1994, 109:55-87. [15] 陈薇,郝毅,倪超,等. 川中下侏罗统大安寨组储层特征及控制因素[J]. 西南石油大学学报(自然科学版),2013,35(5):7-14. Chen Wei, Hao Yi, Ni Chao, et al.Reservoir Characteristics and Controlling Factors of Da'an Zhai Member in Lower Jurassic, Central Sichuan[J]. Journal of West Petroleum University (Science & Technology Edition), 2013, 35(5):7-14. [16] 刘传联. 东营凹陷沙河街组湖相碳酸盐岩碳氧同位素组分及其古湖泊学意义[J]. 沉积学报,1998,16(3):109-114. Liu Chuanlian. Carbon and Oxygen Isotopic Compositions of Lacustrine Carbonates of the Shahejie Formation in the Dongying Depression and Their Paleolimnological Significance[J]. Acta Sedimentologica Sinica, 1998, 16(3):109-114. [17] 张永生,王国力,杨玉卿,等. 江汉盆地潜江凹陷古近系盐湖沉积盐韵律及其古气候意义[J]. 古地理学报,2005,7(4):461-470. Zhang Yongsheng, Wang Guoli, Yang Yuqing, et al.Rhythms of Saline Lake Sediments of the Paleogene and Their Paleoclimatic Significance in Qianjiang Sag, Jianghan Basin[J]. Journal of Palaeogeography, 2005, 7(4):461-470. [18] 王建功,张道伟,易定红,等. 柴西地区下干柴沟组上段湖相碳酸盐岩沉积特征及相模式[J]. 岩性油气藏,2018,30(4):12-13. Wang Jiangong, Zhang Daowei, Yi Dinghong, et al. Depositional Characteristics and Facies Model of Lacustrine Carbonate Rock in the Upper Member of Lower Ganchaigou Formation in Western Qaidam Basin[J]. Lithologic Reservoirs, 2018, 30(4):12-13. [19] 王建功,张道伟,袁剑英,等. 英西湖相碳酸盐岩储层成因与含油性分析[J]. 中国矿业大学学报,2019,48(1):110-120. Wang Jiangong, Zhang Daowei, Yuan Jianying, et al. Characteristics of Reservoir Genesis and Oil & Gas Accumulation in Lacustrine Carbonate in Yingxi Area of Qaidam Basin[J]. Journal of China University of Mining & Technology, 2019, 48(1):110-120. [20] 黄成刚,常海燕,崔俊,等. 柴达木盆地西部地区渐新世沉积特征与油气成藏模式[J]. 石油学报,2017,38(11):1230-1243. Huang Chenggang,Chang Haiyan,Cui Jun,et al. OligoceneSedimentaryCharacteristicsandHydrocarbonAccumulationModel intheWesternQaidamBasin[J]. ActaPetroleiSinica,2017,38(11):1230-1243. [21] 徐伟,陈开远,曹正林,等. 咸化湖盆混积岩成因机理研究[J]. 岩石学报,2014,30(6):1804-1816. Xu Wei, Chen Kaiyuan, Cao Zhenglin, et al.Original Mechanism of Mixed Sediments in the Saline Lcustrine Basin[J]. Acta Petrologica Sinica[J], 2014, 30(6):1804-1816. [22] 袁剑英,黄成刚,曹正林,等. 咸化湖盆白云岩碳氧同位素特征及古环境意义:以柴西地区始新统下干柴沟组为例[J]. 地球化学,2015,44(3):254-266. Yuan Jianying, Huang Chenggang, Cao Zhenglin, et al. Carbon and Oxygen Isotopic Composition of Saline Lacustrine Dolomite and Its Palaeoenvironmental Significance:A Case Study of Lower Eocene Ganchaigou Formation in Western Qaidam Basin[J]. Geochimica, 2015, 44(3):254-266. [23] 袁剑英,黄成刚,夏青松,等. 咸化湖盆碳酸盐岩储层特征及孔隙形成机理:以柴西地区始新统下干柴沟组为例[J]. 地质论评,2016,62(1):111-126. Yuan Jianying, Huang Chenggang, Xia Qingsong, et al. The Characteristics of Carbonate Reservoir, and Formation Mechanism of Pores in the Saline Lacustrine Basin:A Case Study of the Lower Eocene Ganchaigou Formation in Western Qaidam Basin[J]. Geological Review, 2016, 62(1):111-126. [24] Riding R. Microbial Carbonates:The Geological Record of Calcified Bacterial-Algal Mats and Biofilms[J]. Sedimentology, 2000, 47(Sup. 1):179-214. [25] Carroll A R,Bohacs K M. Stratigraphic Classification of Ancient Takes:Balancing Tectonic and Climatic Controls[J]. Geology, 1999, 27:99-102. [26] 寿建峰,邵文斌,陈子炓,等. 柴西地区第三系藻灰(云)岩的岩石类型与分布特征[J]. 石油勘探与开发,2003,30(4):37-39. Shou Jianfeng, Shao Wenbin, Chen Ziliao, et al.Lithological Types and Distribution Features of Tertiary Algal-Limestone in Chaixi Area, Qaidam Basin[J]. Petroleum Exploration and Development, 2003, 30(4):37-39. [27] Talbot M R, Allen P A. Lakes[C]//Reading H G. Sedimentary Environments:Processes, Facies and Stratigraphy. Oxford:Blackwell Publishing, 1996:83-124. [28] Gierlowski-Kordesch E H. Chapter 1 Lacustrine Carbonates[C]//Alonso-Zarza A M, Tanner L H. Carbonates in Continental Settings:Facies, Environments, and Processes.[S. l.]:Elsevier, 2010:1-101. |
[1] | Zeng Wenren, Meng Qingtao, Liu Zhaojun, Xu Yinbo, Sun Pingchang, Wang Kebing. Organic Geochemical Characteristics and Paleo-Lake Conditions of Oil Shale of Middle Jurassic Shimengou Formation in Tuanyushan Area of Northern Qaidam Basin [J]. Journal of Jilin University(Earth Science Edition), 2019, 49(5): 1270-1284. |
[2] | Tian Min, Dong Chunmei, Lin Chengyan, Chai Xiaoying, Wang Lijuan. Productivity Evaluation Method of Single Sand Body Gas Reservoir in Sebei-2 Biogenic Gas Field, Qaidam Basin [J]. Journal of Jilin University(Earth Science Edition), 2017, 47(4): 1060-1069. |
[3] | Zhou Gang, Zheng Rongcai, Zhao Gang, Wen Huaguo, Wen Longbin. Characteristics, Origin and Geological Significance of Oncolites of Givetian(Middle Devonian) in Ganxi Area, Northwestern Sichuan [J]. Journal of Jilin University(Earth Science Edition), 2017, 47(2): 405-417. |
[4] | Ju Yinjuan, Zhang Xiaoli, Zhang Yongshu, Chen Yan. Fracture Characteristics of Bedrock Reservoir in the North-Kunlun Faults Zone, Qaidam Basin [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(6): 1660-1671. |
[5] | Pei Junling, Zhou Zaizheng, Li Haibing, Sun Zhiming. Strike-Slip of Altyn Tagh Didn't Result in Qaidam Basin Rotation Since Middle-Miocene [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(1): 163-174. |
[6] | Wang Yadong, Zheng Jianjing, Sun Guoqiang, Zheng Youwei, Liu Xingwang. Early Cenozoic Altyn Mountains Uplift Recorded by Detrital Zircon Fission Track Age in Northwest Qaidam Basin [J]. Journal of Jilin University(Earth Science Edition), 2015, 45(5): 1447-1459. |
[7] | Zhu Chao, Xia Zhiyuan, Wang Chuanwu, Song Guangyong, Wei Xuebin, Wang Peng, Wang Haifeng, Wang Bo. Seismic Prediction for Sweet Spot Reservoir of Tight Oil [J]. Journal of Jilin University(Earth Science Edition), 2015, 45(2): 602-610. |
[8] | Lu Jungang, Yao Yitong, Wang Li, Chen Shijia, Wang Liqun, Guan Junya, Zhang Huanxu, Tang Haiping. Oil Source and Mature Oil Exploration Potential of Yuejin Slope Area in the Qaidam Basin [J]. Journal of Jilin University(Earth Science Edition), 2014, 44(3): 730-740. |
[9] | GAO Jun-peng, FANG Xiao-min, SONG Chun-hui, LI Sheng-xi, XUE Jian-ping. Tectonic-Thermo Events of Northern Tibetan Plateau: Evidence from Detrital Apatite Fission Track Data in Western Qaidam Basin [J]. J4, 2011, 41(5): 1466-1475. |
[10] | YIN Cheng-ming, REN Shou-mai, TIAN Li-yan. Effect of Altyn Tagh Fault to Southwest Qaidam Basin: Evidences from Analysis of Joints Data [J]. J4, 2011, 41(3): 724-734. |
[11] | LI Xiong-yan, LI Hong-qi, YIN Peng, CHEN Yi-han, ZHOU Jin-yu. Origin of Low Gas-Saturated Reservoirs in the Quaternary of Sanhu Area in Qaidam Basin [J]. J4, 2010, 40(6): 1241-1247. |
[12] | LIU Zhi-hong, WANG Peng, DIAO Cheng-xiang, SHA Qian, ZHOU Fei. Discovery of Cretaceous Compressional Structure in Northern Margin of Qaidam Basin and Its Geological Significance [J]. J4, 2010, 40(5): 979-985. |
[13] | LIU Zhi-hong, WANG Peng, LIU Yong-jiang, ZHAO Cheng-xiang, GAO Jun-yi, MO Chuan-biao. Structural Features and Determination of Deformation Time in the Nanyishan-Jiandingshan Area of Qaidam Basin [J]. J4, 2009, 39(5): 796-802. |
[14] | SHEN Yan-jie, CHENG Ri-hui, WANG Liao-liang, LI Fei, XU Zhong-jie. Salt Lake Sediments of the Upper Cretaceous in Eastern Guangdong and Its Significance in Oil and Gas Exploration of the Mesozoic in the Northern South China Sea [J]. J4, 2009, 39(5): 759-766. |
[15] | YIN Cheng-ming,LI Wei-min,R. Andrea,LIU Yong-jiang,CHEN Yuan-zhong,GONG Qing-lin. Cenozoic Climate Changes in the Qaidam Basin, Western China: Evidenced From Carbon and Oxygen Stable Isotope [J]. J4, 2007, 37(5): 901-0907. |
|