张伙兰,裴健翔,谢金有,等. 莺歌海盆地东方区黄流组一段超压储层孔隙结构特征[J]. 中国海上油气,2014,26(1):30-38. [Zhang Huolan, Pei Jianxiang, Xie Jinyou, et al. Pore structure characteristics of Member 1 overpressured reservoir in Huangliu Formation, Dongfang area, Yinggehai Basin[J]. China Offshore Oil and Gas, 2014, 26(1): 30-38.]
[2]
魏国齐,李剑,张水昌,等. 中国天然气基础地质理论问题研究新进展[J]. 天然气工业,2012,32(3):6-14. [Wei Guoqi, Li Jian, Zhang Shuichang, et al. New progress in the studies on basic geological theories of natural gas in China[J]. Natural Gas Industry, 2012, 32(3): 6-14.]
[3]
惠健,刘建仪,李颖川,等. 异常高温凝析气藏产水规律综合研究[J]. 天然气工业,2004,24(7):89-91. [Hui Jian, Liu Jianyi, Li Yingchuan, et al. Integrated study on water-producing law of condensate reservoirs with anomaly high temperature[J]. Natural Gas Industry, 2004, 24(7): 89-91.]
[4]
郭绪强,阎炜,陈爽,等. 特高压力下天然气压缩因子模型应用评价[J]. 石油大学学报:自然科学版,2000,24(6):36-38. [Guo Xuqiang, Yan Wei, Chen Shuang, et al. Comparison of methods for calculating compressibility factor of natural gas at elevated high pressure[J]. Journal of the University of Petroleum, China: Edition of Natural Science, 2000, 24(6): 36-38.]
[5]
刘志斌,刘道杰,田中敬,等. 高温高压凝析气藏物质平衡方程的建立-考虑气藏气相水蒸气含量及岩石颗粒的弹性膨胀作用[J]. 天然气工业,2011,31(7):37-39. [Liu Zhibin, Liu Daojie, Tian Zhongjing, et al. Establishment of material balance equation of HPHT gas condensate reservoirs: Taking into account the water vapor content of gas phase and the elastic expansion of rock particles[J]. Natural Gas Industry, 2011, 31(7): 37-39.]
[6]
裴健翔,于俊峰,王立峰,等. 莺歌海盆地中深层天然气勘探的关键问题及对策[J]. 石油学报,2011,32(4):573-578. [Pei Jianxiang, Yu Junfeng, Wang Lifeng, et al. Key challenges and strategies for the success of natural gas exploration in mid-deep strata of the Yinggehai Basin[J]. Acta Petrolei Sinica, 2011, 32(4): 573-578.]
[7]
陈善勇,李军,孙兵,等. 歧北深层高温高压条件下烃源岩特殊的成烃演化规律[J]. 石油勘探与开发,2003,30(1):38-40. [Chen Shanyong, Li Jun, Sun Bing, et al. Special hydrocarbon-generation evolution of source rocks under deep, high temperature and pressure in northern Qikou area[J]. Petroleum Exploration and Development, 2003, 30(1): 38-40.]
[8]
刘震,贺维英,韩军,等. 准噶尔盆地东部地温-地压系统与油气运聚成藏的关系[J]. 石油大学学报:自然科学版,2000,24(4):15-20. [Liu Zhen, He Weiying, Han Jun, et al. Relation of geotemperature-formation pressure systems with migration and accumulation of petroleum in the east of Junggar Basin[J]. Journal of The University of Petroleum, China, 2000, 24(4): 15-20.]
[9]
张伙兰,裴健翔,张迎朝,等. 莺歌海盆地东方区中深层黄流组超压储集层特征[J]. 石油勘探与开发,2013,40(3):284-293. [Zhang Huolan, Pei Jianxiang, Zhang Yingzhao, et al. Overpressure reservoirs in the mid-deep Huangliu Formation of the Dongfang area, Yinggehai Basin, South China Sea[J]. Petroleum Exploration and Development, 2013, 40(3): 284-293.]
[10]
王英超,刘平,李国良,等. 莺歌海盆地东方1-1气田地层水特征及其与油气保存的关系[J]. 天然气勘探与开发,2010,33(2):19-22. [Wang Yingchao, Liu Ping, Li Guoliang, et al. Formation water characteristics and its relationship with hydrocarbon preservation, DF1-1 gas field in Yinggehai Basin[J]. Natural Gas Exploration and Development, 2010, 33(2): 19-22.]
[11]
龚再升,李思田. 南海北部大陆边缘盆地分布与油气聚集[M]. 北京:科学出版社,1997. [Gong Zaisheng, Li Sitian. Distribution and Petroleum Accumulation of Continental Margin Basins of Northern South China Sea[M]. Beijing: Science Press, 1997.]
[12]
郝芳,董伟良,邹华耀,等. 莺歌海盆地汇聚型超压流体流动及天然气晚期快速成藏[J]. 石油学报,2003,24(6):7-12. [Hao Fang, Dong Weiliang, Zou Huayao, et al. Overpressure fluid flow and rapid accumulation of natural gas in Yinggehai Basin[J]. Acta Petrolei Sinica, 2003, 24(6): 7-12.]
[13]
Lei Chao, Ren Jianye, Clift P D, et al. The structure and formation of diapirs in the Yinggehai-Song Hong Basin, South China Sea[J]. Marine and Petroleum Geology, 2011, 28(5): 980-991.
[14]
张伙兰,谢金有,刘亿,等. 莺歌海盆地XF区黄流组砂岩储集性能差异的控制因素及其地质意义[J]. 天然气工业,2014,34(5):43-48. [Zhang Huolan, Xie Jinyou, Liu Yi, et al. Controlling factors of storage capacity differences of Huangliu Formation sandstone in XF area of the Yinggehai Basin and their geologic significance[J]. Natural Gas Industry, 2014, 34(5): 43-48.]
[15]
谢玉洪,张迎朝,李绪深,等. 莺歌海盆地高温超压气藏控藏要素与成藏模式[J]. 石油学报,2012,33(4):601-609. [Xie Yuhong, Zhang Yingzhao, Li Xushen, et al. Main controlling factors and formation models of natural gas reservoirs with high-temperature and overpressure in Yinggehai Basin[J]. Acta Petrolei Sinica, 2012, 33(4): 601-609.]
[16]
谢玉洪,范彩伟. 莺歌海盆地东方区黄流组储层成因新认识[J]. 中国海上油气,2010,22(6):355-359,386. [Xie Yuhong, Fan Caiwei. Some new knowledge about the origin of Huangliu Formation reservoirs in Dongfang area, Yinggehai Basin[J]. China Offshore Oil and Gas, 2010, 22(6): 355-359, 386.]
[17]
Wardlaw N C, Taylor R P. Mercury capillary pressure curves and the interpretation of pore structure and capillary behavior in reservoir rocks [J]. Bulletin of Canadian Petroleum Geology, 1976, 24(2): 225-262.
[18]
Pittman E D. Relationship of porosity and permeability to various parameters derived from mercury injection: Capillary pressure curves for sandstone[J]. AAPG Bulletin, 1992, 76(2): 191-198.
[19]
Sun W, Tang G Q. Visual study of water injection in low permeable sandstone[J]. Journal of Canadian Petroleum Technology, 2006, 45(11): 21-26.
[20]
吴小斌,侯加根,孙卫. 特低渗砂岩储层微观结构及孔隙演化定量分析[J]. 中南大学学报:自然科学版,2011,42(11):3438-3446. [Wu Xiaobin, Hou Jiagen, Sun Wei. Microstructure characteristics and quantitative analysis on porosity evolution of ultra-low sandstone reservoir[J]. Journal of Central South University: Science and Technology, 2011, 42(11): 3438-3446.]
[21]
张新涛,刘立,魏文艳. 海拉尔盆地贝尔凹陷铜钵庙组成岩作用及其对孔隙演化的影响[J]. 吉林大学学报:地球科学版,2008,38(1):34-42. [Zhang Xintao, Liu Li, Wei Wenyan. Diagenesis and its influence to porosity evolution of Tongbomiao Formation in Beier sag, Hailaer Basin[J]. Journal of Jilin University: Earth Science Edition, 2008, 38(1): 34-42.]
[22]
郭建华,朱锐,周小康. 塔河地区西南缘东河砂岩的成岩作用与孔隙演化[J]. 中南大学学报:自然科学版,2006,37(3):572-578. [Guo Jianhua, Zhu Rui, Zhou Xiaokang. Diagenesis and porosity evolution of Donghe sandstone in southwest of Tahe area[J]. Journal of Central South University: Science and Technology, 2006, 37(3): 572-578.]
[23]
伍小玉,罗明高,聂振荣,等. 恒速压汞技术在储层孔隙结构特征研究中的应用-以克拉玛依油田七中区及七东区克下组油藏为例[J]. 天然气勘探与开发,2012,35(3):20-30. [Wu Xiaoyu, Luo Minggao, Nie Zhenrong, et al. Application of constant-velocity mercury-injection technology to studying porous structure of reservoir: An example from Kexia Formation in 7 middle and east areas of Karamay Oilfield[J]. Natural Gas Exploration & Development, 2012, 35(3): 20-30.]
[24]
于俊波,郭殿军,王新强. 基于恒速压汞技术的低渗透储层物性特征[J]. 大庆石油学院学报,2006,30(2):22-25. [Yu Junbo, Guo Dianjun, Wang Xinqiang. Study of microscopic behaviors of low permeable reservior through constant velocity mercury injection technique[J]. Journal of Daqing Petroleum Institute, 2006, 30(2): 22-25.]
[25]
林玉保,张江,刘先贵,等. 喇嘛甸油田高含水后期储集层孔隙结构特征[J]. 石油勘探与开发,2008,35(2):215-219. [Lin Yubao, Zhang Jiang, Liu Xiangui, et al. Pore structure features of reservoirs at late high water-cut stage, Lamadian oilfield, Daqing[J]. Petroleum Exploration and Development, 2008, 35(2): 215-219.]
[26]
杨正明,张英芝,郝明强,等. 低渗透油田储层综合评价方法[J]. 石油学报,2006,27(2):64-67. [Yang Zhengming, Zhang Yingzhi, Hao Mingqiang, et al. Comprehensive evaluation of reservoir in low-permeability oilfields[J]. Acta Petrolei Sinica, 2006, 27(2): 64-67.]