Zhou Chuanmin1,2, Song Lihong3, Liu Qingsong4, Luo Zhong1,2, Gao Zhiyong1,2
Online:
2014-08-01
Published:
2014-08-01
Zhou Chuanmin1,2, Song Lihong3, Liu Qingsong4, Luo Zhong1,2, Gao Zhiyong1,2. Seismic Geomorphology of Channel Belts of the 5th Interval,Xujiahe Formation,Upper Triassic in Central Sichuan Basin,China[J]. 西南石油大学学报(自然科学版), DOI: 10.11885/j.issn.1674-5086.2014.03.12.03.
[1] Dahm C G,Graebner R J. Field development with threedimensional seismic methods in the gulf of Thailand—A case history[J]. Geophysics,1982,47(2):149–176. [2] Zeng Hongliu,Backus M M,Barrow K T,et al. Stratal slicing,part I:Realistic 3-D seismic model[J]. Geophysics, 1998,63(2):502–513. [3] Zeng Hongliu,Henry S C,Riola J P. Stratal slicing, part II:Real seismic data[J]. Geophysics,1998,63(2): 514–522. [4] Posamentier H W. Seismic geomorphology and depositional systems of deep water environments,observations from offshore Nigeria,Gulf of Mexico,and Indonesia[C]. Florence,Italy:EAGE 64th Conference & Exhibition, 2002. [5] Zeng Hongliu,Hentz T F. High-frequency sequence stratigraphy from seismic sedimentology:Applied to Miocene,Vermilion Block 50,Tiger Shoal Area,offshore Louisiana[J]. AAPG Bulletin,2004,88(2):153–174. [6] 罗启后,王世谦. 四川盆地中西部三叠系重点含气层系 天然气富集条件研究[J]. 天然气工业,1996,16(S1): 40–54. [7] 刘德良,宋岩,薛爱民,等. 四川盆地构造与天然气聚 集区带综合研究[M]. 北京:石油工业出版社,2000. [8] 蒋裕强,陶艳忠,沈妍斐,等. 对大川中地区上三叠统 须家河组二、四、六段砂岩沉积相的再认识[J]. 天然气 工业,2011,31(9):39–50. Jiang Yuqiang,Tao Yanzhong,Shen Yanfei,et al. A new understanding of sedimentary facies of sandstones in the members of the Upper Triassic Xujiahe Formation in the large-scale Middle Sichuan Basin[J]. Natural Gas Industry, 2011,31(9):39–50. [9] 徐昉昊,袁海锋,黄素,等. 川中地区须家河组致密砂 岩气成藏机理[J]. 成都理工大学学报:自然科学版, 2012,39(2):158–163. Xu Fanghao,Yuan Haifeng,Huang Su,et al. Accumulation mechanism of the compacted sandstone gas in Xujiahe Formation of central Sichuan in China[J]. Journal of Chengdu University of Technology:Science & Technology Edition,2012,39(2):158–163. [10] 宋丽红,朱如凯,朱德升,等. 粘土矿物对广安须家河 组致密砂岩物性影响[J]. 西南石油大学学报:自然科 学版,2011,33(2):73–78. Song Lihong,Zhu Rukai,Zhu Desheng,et al. Influences of clay minerals on physical properties of tight sandstones of Xujiahe formation in Guang′an Area[J]. Journal of Southwest Petroleum University:Science & Technology Edition,2011,33(2):73–78. [11] 段新国,李爽,宋荣彩,等. 四川盆地须二段储层孔隙 演化定量描述[J]. 西南石油大学学报:自然科学版, 2011,33(2):35–42. Duan Xinguo,Li Shuang,Song Rongcai,et al. Quantitative description of pore evolution of the Second Formation of Xujiahe reservoir in Sichuan Basin[J]. Journal of Southwest Petroleum University:Science & Technology Edition,2011,33(2):35–42. [12] 徐安娜,汪泽成,赵文智,等. 四川盆地须家河组二段 储集体非均质性特征及其成因[J]. 天然气工业,2011, 31(11):53–58. Xu Anna,Wang Zecheng,Zhao Wenzhi,et al. Features and genesis of reservoir heterogeneity in the second member of the Upper Triassic Xujiahe Formation,Sichuan Basin[J]. Natural Gas Industry,2011,31(11):53–58. [13] 兰朝利,田冷,王建国,等. 广安气田气水分布控制机 理[J]. 西安石油大学学报:自然科学版,2013,28(5): 1–7. Lan Zhaoli,Tian Leng,Wang Jianguo,et al. Water distribution mechanism of Guang′an Gas Field[J]. Journal of Xi′an Shiyou University:Natural Science Edition,2013, 28(5):1–7. [14] 徐兆辉,汪泽成,徐安娜,等. 四川盆地须家河组致密 砂岩储集层特征与分级评价[J]. 新疆石油地质,2011, 32(1):26–28. Xu Zhaohui,Wang Zecheng,Xu Anna,et al. Characteristics and grade evaluation of tight sandstone reservoirs of Xujiahe Formation in Sichuan Basin[J]. Xinjiang Petroleum Geology,2011,32(1):26–28. [15] 赵文智,卞从胜,徐春春,等. 四川盆地须家河组须一、 三和五段天然气源内成藏潜力与有利区评价[J]. 石油 勘探与开发,2011,38(4):385–393. Zhao Wenzhi,Bian Congsheng,Xu Chunchun,et al. Assessment on gas accumulation potential and favorable plays within the Xu-1,3 and 5 Members of Xujiahe Formation in Sichuan Basin[J]. Petroleum Exploration and Development,2011,38(4):385–393. [16] 赵正望,谢继容,李楠,等. 四川盆地须家河组一、 三、五段天然气勘探潜力分析[J]. 天然气工业,2013, 33(6):23–28. Zhao Zhengwang,Xie Jirong,Li Nan,et al. Gas exploration potential of the 1st,3rd,and 5th members of Xujiahe Formation reservoirs in the Sichuan Basin[J]. Natural Gas Industry,2013,33(6):23–28. [17] 车国琼,龚昌明,汪楠,等. 广安地区须家河组气藏成 藏条件[J]. 天然气工业,2007,27(6):1–5. Che Guoqiong,Gong Changming,Wang Nan,et al. Gas accumulation condition in the Xujiahe Group of Guang′an Area[J]. Nature Gas Industry,2007,27(6):1–5. [18] 翟光明. 中国石油地质志:卷十[M]. 北京:石油工业出 版社,1989. [19] 汪泽成,李宗银,李志荣,等. 川中地区须家河组构 造变形成因探讨及其勘探意[J]. 天然气工业,2012, 32(4):13–18. Wang Zecheng,Li Zongyin,Li Zhirong,et al. Genesis of structural deformation of the Xujiahe Formation in the central Sichuan Basin and its significance to petroleum exploration[ J]. Natural Gas Industry,2012,32(4):13–18. [20] 刘柳红,朱如凯,罗平,等. 川中地区须五段—须六 段浅水三角洲沉积特征与模式[J]. 现代地质,2009, 23(4):667–675. Liu Liuhong,Zhu Rukai,Luo ping,et al. Characteristic sand depositional models for the Shallow-water deltas of the 5th–6th interval,Xujiahe Formation,upper Triassic in central Sichuan Basin,China[J]. Geoscience,2009, 23(4):667–675. [21] 柯光明,郑荣才,高红灿,等. 四川盆地须家河组高分 辨率层序–岩相古地理特征[J]. 成都理工大学学报:自 然科学版,2008,35(6):630–638. Ke Guangming,Zheng Rongcai,Gao Hongcan,et al. High-resolution sequence stratigraphy and the lithofaciespaleogeographic characteristics of upper Triassic Xujiahe Formation in Sichuan Basin,China[J]. Journal of Cheng du University of Technology:Science & Technology Edition, 2008,35(6):630–638. [22] 郑荣才,戴朝成,朱如凯,等. 四川类前陆盆地须家河 组层序–岩相古地理特征[J]. 地质论评,2009,55(4): 484–495. Zheng Rongcai,Dai Chaocheng,Zhu Rukai,et al. Sequence-based lithofacies and paleogeographic characteristics of upper Triassic Xujiahe Formation in Sichuan Basin[J]. Geological Review,2009,55(4):484–495. [23] Zeng Hongliu. Facies-guided 3-D seismic modeling and reservoir characterization[D]. Austin:University of Texas,1994,164. [24] Posamentier H W,Dorn G A,Cole M J,et al. Imaging elements of depositional systems with 3–D seismic data: A case study[C]. Gulf Coast Section SEPM Foundation, 17th Annual Research Conference,1996,213– 228. [25] Zeng Hongliu. Stratal slice:Meaning and scope of application( abs)[C]. The 2nd Symposium on Petroleum Seismogeology Abstracts,2013,9–10. [26] Bridge J S,Mackey S D. A theoretical study of fluvial sandstone body dimensions[J]. Sediment Speical Publication, 1993,15:213–236. [27] Smith N D,Cross T A,Dufficy J P,et al. Anatomy of an avulsion[J]. Sedimentology,1989,36:1–23. [28] Farrell K M. Geomorphology,facies architecture, and high-resolution, non-marine sequence stratigraphy in avulsion deposits, Cumberland Marshes, Saskatchewan[J]. Sedimentary Geology,2001,139: 93–150. [29] Makaske B. Smith D G,Berendsen H J A. Avulsions, channel evolution and floodplain sedimentation rates of the anastomosing upper Columbia River, British Columbia,Canada[J]. Sedimentology,2002,49: 1049–1071. [30] Allen J R L. A review of the origin and characteristics of recent alluvial sediments[J]. Sedimentology,1965,5: 89–191. [31] Bridge J S,Tye R S. Interpreting the dimensions of ancient fluvial channel bars,channels,and channel belts from wireline-Logs and cores[J]. AAPG Bulletin,2000, 84(8):1205–1228. [32] Bridge J S. Fluvial facies models:recent develpmments[ J]. SEPM Special Publication,2006,84:85–170. [33] Lunt I A,Bridge J S,Tyea R S. A quantitative,threedimensional depositional model of gravelly braided rivers[ J]. Sedimentology,2004,51:377–414. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||