石油与天然气地质 ›› 2020, Vol. 41 ›› Issue (2): 359-366.doi: 10.11743/ogg20200212
徐陈杰1(), 叶加仁1, 刘金水2, 曹强1,*(), 盛溢勇1, 余汉文1
收稿日期:
2020-01-23
出版日期:
2020-04-28
发布日期:
2020-04-03
通讯作者:
曹强
E-mail:chenj_xu@163.com;qcao@cug.edu.cn
第一作者简介:
徐陈杰(1993-),男,博士研究生,盆地模拟与油气资源评价。E-mail:基金项目:
Chenjie Xu1(), Jiaren Ye1, Jinshui Liu2, Qiang Cao1,*(), Yiyong Sheng1, Hanwen Yu1
Received:
2020-01-23
Online:
2020-04-28
Published:
2020-04-03
Contact:
Qiang Cao
E-mail:chenj_xu@163.com;qcao@cug.edu.cn
摘要:
为更真实地刻画烃源岩生排烃过程及为油气资源定量评价提供合理的关键参数,对东海陆架盆地西湖凹陷始新统平湖组Ⅲ型干酪根暗色泥岩开展了半开放体系下热压生排烃模拟实验研究。模拟结果显示,该暗色泥岩的生排烃过程主要包括初期缓慢生油阶段(Ro=0.5%~0.7%)、早期快速生排油阶段(Ro=0.7%~1.0%)、中期油裂解气阶段(Ro=1.0%~1.5%)、后期主生气阶段(Ro=1.5%~2.3%)及晚期生干气阶段(Ro>2.3%)。该烃源岩的排油门限(Ro)约为0.7%,其生气范围较宽(Ro=1.0%~3.0%),且在高—过热演化阶段仍具备较强的生气能力,是以生气为主的气源岩。通过对实验结果和样品生排烃特征的研究,建立了一套西湖凹陷平湖组Ⅲ型暗色泥岩生气与生排油过程及潜力评价的数学模型,可用于该区资源量计算。与封闭体系的高温高压黄金管热模拟实验相比,半开放体系下烃源岩热压生排烃模拟实验的累计产油率更高,也更接近实际地质情况,据此评价可使西湖凹陷具有更大的油气资源量。
中图分类号:
表1
东海西湖凹陷K4井平湖组上段Ⅲ型干酪根暗色泥岩生排烃模拟实验方案"
序号 | 模拟埋深/m | 模拟温度/℃ | 预期Ro/% | 静岩压力/MPa | 排烃釜压力/MPa | 排烃压差/MPa | 排烃温度/℃ | 恒温时间/h | 样品质量/g |
1 | 2 800 | 335 | 0.80 | 64.40 | 33.60 | 2.80 | 140 | 48 | 79.52 |
2 | 3 900 | 360 | 1.25 | 93.60 | 50.70 | 5.85 | 160 | 48 | 79.76 |
3 | 4 450 | 400 | 1.50 | 111.25 | 57.85 | 6.68 | 180 | 48 | 79.70 |
4 | 5 200 | 455 | 1.80 | 130.00 | 72.80 | 10.40 | 190 | 48 | 79.88 |
5 | 5 900 | 480 | 2.00 | 153.40 | 82.60 | 11.80 | 210 | 48 | 79.58 |
6 | 6 200 | 525 | 2.50 | 161.20 | 93.00 | 15.50 | 220 | 48 | 79.69 |
7 | 6 400 | 575 | >3.00 | 166.40 | 96.00 | 16.00 | 220 | 48 | 79.62 |
表2
东海西湖凹陷平湖组Ⅲ型干酪根暗色泥岩近地质条件下热模拟实验结果"
序号 | 模拟温度/℃ | 实验Ro/% | 排出油累计产率/(mg·g-1) | 残留油累计产率/(mg·g-1) | 累计产油率/(mg·g-1) | 累计排出油占比/% | 烃气体积累计产率/(mL·g-1) | 烃气质量累计产率/(mg·g-1) | 甲烷含量/% | 累计产烃率/(mg·g-1) |
1 | 335 | 0.80 | 19.65 | 19.76 | 39.41 | 37.61 | 16.72 | 21.23 | 58.82 | 60.63 |
2 | 360 | 0.98 | 49.77 | 18.29 | 68.06 | 95.27 | 19.12 | 25.15 | 62.14 | 93.21 |
3 | 400 | 1.48 | 51.61 | 5.83 | 57.44 | 98.79 | 38.48 | 47.21 | 73.71 | 104.64 |
4 | 455 | 1.74 | 51.62 | 3.51 | 55.13 | 98.82 | 77.16 | 79.17 | 83.25 | 134.30 |
5 | 480 | 2.07 | 51.90 | 2.32 | 54.22 | 99.35 | 101.12 | 100.70 | 93.10 | 154.92 |
6 | 525 | 2.30 | 51.98 | 1.40 | 53.38 | 99.51 | 129.27 | 117.12 | 96.10 | 170.51 |
7 | 575 | 2.91 | 52.24 | 0.49 | 52.73 | 100.00 | 158.44 | 136.87 | 98.63 | 189.61 |
1 | 邹艳荣, 帅燕华, 孔枫, 等. 油气生成过程实验研究的思考与展望[J]. 石油实验地质, 2004, 26 (4): 375- 382. |
Zou Yanrong , Shuai Yanhua , Kong Feng , et al. Experiments on petroleum generation-considerations and outlook[J]. Petroleum Geology & Experiment, 2004, 26 (4): 375- 382. | |
2 | Connan J . Time-temperature relation in oil genesis[J]. AAPG Bulletin, 1974, 58, 2516- 2521. |
3 | Lopatin N V . Temperature and geologic time as factors in coalification[J]. IZV Akad Nauk SSSR Ser Geol Izvestiya, 1971, 3, 95- 106. |
4 | Waples D W . Time andtemperature in petroleum formation:application of Lopatin's Method to petroleum exploration[J]. AAPG Bulletin, 1980, 64 (7): 916- 926. |
5 | 熊永强, 耿安松, 王云鹏, 等. 干酪根二次生烃动力学模拟实验研究[J]. 中国科学(D辑), 2001, 31 (4): 315- 320. |
Xiong Yongqiang , Geng Ansong , Wang Yunpeng , et al. Simulation experiment of kinetics of kerogen secondary hydrocarbon generation[J]. Science in China(Series D), 2001, 31 (4): 315- 320. | |
6 | 黄雪峰, 吴伟. 辽中凹陷古近系烃源岩生烃模拟[J]. 油气藏评价与开发, 2017, 7 (1): 1- 6. |
Huang Xuefeng , Wu Wei . Hydrocarbon generating simulation of Paleogene source rocks in Liaozhong sag[J]. Reservoir Evaluation and Development, 2017, 7 (1): 1- 6. | |
7 | Lewan M D , Winters J C , McDonald J H . Generation of oil-like pyrolyzates from organic-rich shales[J]. Science, 1979, 203, 897- 899. |
8 | Behar F , Kressmann S , Rudkiewicz J L , et al. Experimental simulation in a confined systems and kinetic modeling of kerogen and oil cracking[J]. Organic Geochemistry, 1992, 19 (1/3): 173- 189. |
9 | Ungerer P . State of the art of research in kinetics modeling of oil formation and expulsion[J]. Organic Geochemistry, 1990, 16 (1/3): 1- 25. |
10 | Ungerer P , Pelet R . Extrapolation of the kinetics of oil and gas formation from laboratory experiments to sedimentary basins[J]. Nature, 1987, 327, 52- 54. |
11 | Henderson W , Eglinton G , Simmods P , et al. Thermal alteration as contributory process to genesis of petroleum[J]. Nature, 1968, 209, 1012- 1016. |
12 | Landais P , Michels R , Elie M . Are time and temperature the only constraints to the simulation of organic matter maturation?[J]. Organic Geochemistry, 1994, 22 (3/5): 617- 630. |
13 | 关德范, 王国力, 张金功, 等. 成盆成烃成藏理论思维:从盆地到油气藏[M]. 北京: 石油工业出版社, 2004. |
Guan Defan , Wang Guoli , Zhang Jingong , et al. Theoretical thinking of the basin formation and the hydrocarbon generation and accumulation:from basins to reservoirs[M]. Beijing: Petroleum industry press, 2004. | |
14 | 关德范, 徐旭辉, 李志明, 等. 成盆成烃成藏理论思维与有限空间生烃模式[J]. 石油与天然气地质, 2008, 29 (6): 709- 715. |
Guan Defan , Xu Xuhui , Li Zhiming , et al. A study on theories of basin evolution and hydrocarbon generation and accumulation and model of hydrocarbon generation in finite spaces[J]. Oil & Gas Geology, 2008, 29 (6): 709- 715. | |
15 | 关德范, 徐旭辉, 李志明, 等. 烃源岩有限空间生排烃基础研究新进展[J]. 石油实验地质, 2011, 33 (5): 441- 446. |
Guan Defan , Xu Xuhui , Li Zhiming , et al. New progress in basic studies of hydrocarbon generation and expulsion of source rock in finite space[J]. Petroleum Geology & Experiment, 2011, 33 (5): 441- 446. | |
16 | Hunt J M . Petroleum geochemistry and geology[M]. San Francisco: Freeman, 1979. |
17 | Tissot B P , Welte D H . Petroleum formation and occurrence[M]. New York: Springer Verlag, 1984. |
18 | 汤庆艳, 张铭杰, 张同伟, 等. 生烃热模拟实验方法述评[J]. 西南石油大学学报(自然科学版), 2013, 35 (1): 52- 62. |
Tang Qingyan , Zhang Mingjie , Zhang Tongwei , et al. A review on pyrolysis experimentation on hydrocarbon generation[J]. Journal of Southwest Petroleum University(Science & Technology Edition), 2013, 35 (1): 52- 62. | |
19 | 刁慧, 刘金水, 候读杰, 等. 中国近海断-坳转换期煤系烃源岩特征——以西湖凹陷平湖组烃源岩为例[J]. 海洋地质与第四纪地质, 2019, 39 (6): 102- 114. |
Diao Hui , Liu Jinshui , Hou Dujie , et al. Coal-bearing source rocks formed in the transitional stage from faulting to depression nearshore China-A case from the Pinghu Formation in the Xihu Sag[J]. Marine Geology & Quaternary geology, 2019, 39 (6): 102- 114. | |
20 | 张国华, 张志强, 周全, 等. 东海油田随钻电阻率与电缆电阻率差异影响因素分析——以西湖凹陷为例[J]. 石油地质与工程, 2018, 32 (2): 103- 106. |
Zhang Guohua , Zhang Zhiqiang , Zhou Quan , et al. Analysis of influencing factors of resistivity difference between LWD and wireline in Donghai oilfield[J]. Petroleum Geology & Engineering, 2018, 32 (2): 103- 106. | |
21 | 何光玉,朱扬明,陈晓东,等.东海盆地西湖凹陷深层烃源岩地球化学特征研究[R].上海:中海石油(中国)有限公司上海分公司研究院, 2010: 132-133, 138-140. |
He Guangyu, Zhu Yangming, Chen Xiaodong, et al.Geochemical research on deep source-rocks of Xihu Sag of East China Sea Basin[R].Shanghai: Research Institute of Shanghai Branch of CNOOC(China) Co Ltd, 2010: 132-133, 138-140. | |
22 | 米敬奎, 张水昌, 王晓梅. 不同类型生烃模拟实验方法对比与关键技术[J]. 石油实验地质, 2009, 31 (4): 409- 414. |
Mi Jingkui , Zhang Shuichang , Wang Xiaomei . Comparison of different hydrocarbon generation simulation approaches and key technique[J]. Petroleum Geology & Experiment, 2009, 31 (4): 409- 414. | |
23 | 张彩明, 郑伦举, 许锦. 不同模拟实验条件下烃源岩生油气能力对比及意义[J]. 石油实验地质, 2016, 38 (5): 665- 678. |
Zhang Caiming , Zheng Lunju , Xu Jin . Hydrocarbon generation potential under different experimental conditions and its petroleum geology significance[J]. Petroleum Geology & Experiment, 2016, 38 (5): 665- 678. | |
24 | 郑伦举,马中良.中国石化无锡石油地质研究所实验地质技术之地层孔隙热压生排烃模拟实验技术[J].石油实验地质, 2010, 31(3):封二. |
Zheng Lunju, Ma Zhongliang.Formation porosity thermocompression simulation experiment of hydrocarbon generation and expulsion, experimental geological technology of Wuxi Research Institute of Petroleum Geology, Sinopec[J].Petroleum Geology & Experiment, 2010, 31(3):Inside cover. | |
25 | 郑伦举, 秦建中, 何生, 等. 地层孔隙热压生排烃模拟实验初步研究[J]. 石油实验地质, 2009, 31 (3): 296- 306. |
Zheng Lunju , Qin Jianzhong , He Sheng , et al. Preliminary study of formation porosity thermocompression simulation experiment of hydrocarbon generation and expulsion[J]. Petroleum Geology & Experiment, 2009, 31 (3): 296- 306. | |
26 | 马中良, 郑伦举, 李志明. 烃源岩有限空间温压共控生排烃模拟实验研究[J]. 沉积学报, 2012, 30 (5): 955- 963. |
Ma Zhongliang , Zheng Lunju , Li Zhiming . The thermocompression simulation experiment of source rock hydrocarbon generation and expulsion in formation porosity[J]. ACTA Sedimentologica Sinica, 2012, 30 (5): 955- 963. | |
27 | 李志明, 郑伦举, 马中良, 等. 烃源岩有限空间油气生排模拟及其意义[J]. 石油实验地质, 2011, 33 (5): 447- 459. |
Li Zhiming , Zheng Lunju , Ma Zhongliang , et al. Simulation of source rock for hydrocarbon generation and expulsion in finite space and its significance[J]. Petroleum Geology & Experiment, 2011, 33 (5): 447- 459. | |
28 | 仝志刚, 贺清, 何仕斌, 等. 东海西湖凹陷地温场及其对烃源岩的作用[J]. 石油实验地质, 2009, 31 (5): 466- 471. |
Tong Zhigang , He Qing , He Shibin , et al. Geothermal field and its effect on source rock in the Xihu Sag, the East China Sea Basin[J]. Petroleum Geology & Experiment, 2009, 31 (5): 466- 471. | |
29 | 娄敏, 杨香华, 江平, 等. 西湖凹陷中央背斜带中北部花港组储层成岩相测井识别[J]. 石油地质与工程, 2019, 33 (4): 6- 10. |
Lou Min , Yang Xianghua , Jiang Ping , et al. Reservoir diagenetic facies logging identification of Huagang formation in central-northern of the central anticlinal belt of Xihu sag[J]. Petroleum Geology & Engineering, 2019, 33 (4): 6- 10. | |
30 | 阙永泉, 郑伦举, 承秋泉, 等. 有机质热解模拟实验残留物镜质体反射率校正研究[J]. 石油实验地质, 2015, 37 (4): 506- 517. |
Que Yongquan , Zheng Lunju , Cheng Qiuquan , et al. Vitrinite reflectance correction of residues in organic matter pyrolysis simulation experiments[J]. Petroleum Geology & Experiment, 2015, 37 (4): 506- 517. | |
31 | 高岗, 柳广弟, 王兆峰. 生烃模拟结果的校正[J]. 新疆石油地质, 2005, 26 (2): 202- 205. |
Gao Gang , Liu Guangdi , Wang Zhaofeng . Correction of results from hydrocarbon-generating simulation[J]. Xinjiang Petroleum Geology, 2005, 26 (2): 202- 205. | |
32 | 庞雄奇, 陈章明, 陈发景. 含油气盆地地史、热史、生留排烃史数值模拟研究与烃源岩定量评价[M]. 北京: 地质出版社, 1993: 23- 36. |
Pang Xiongqi , Chen Zhangming , Chen Fajing . Numerical simulation of the geological history, thermal history, hydrocarbon generation, retention and expulsion history and quantitative evaluation of source rock of petroliferous basins[M]. Beijing: Geological Publishing House, 1993: 23- 36. | |
33 | 吴警.中国中部盆地Ⅱ型有机质生排烃实验模拟研究[D].成都:成都理工大学, 2016. |
Wu Jing.Simulation experiment study of hydrocarbon generation and expulsion of Type-Ⅱ organic matter in Central Basin, China[D].Chengdu: Chengdu University of Technology, 2016. | |
34 | 陈建平, 孙永革, 钟宁宁, 等. 地质条件下湖相烃源岩生排烃效率与模式[J]. 地质学报, 2014, 88 (11): 2005- 2032. |
Chen Jianping , Sun Yongge , Zhong Ningning , et al. The efficiency and model of petroleum expulsion from the lacustrine source rocks within geological frame[J]. Acta Geologica Sinica, 2014, 88 (11): 2005- 2032. | |
35 | 刘勇, 徐国盛, 曾兵, 等. 东海盆地西湖凹陷花港组储层孔隙演化与油气充注关系[J]. 石油实验地质, 2018, 40 (2): 168- 176. |
Liu Yong , Xu Guosheng , Zeng Bing , et al. Relationship between porosity evolution and hydrocarbon charging in tight sandstone reservoirs in Oligocene Huagang Formation, Xihu Sag, East China Sea Basin[J]. Petroleum Geology & Experiment, 2018, 40 (2): 168- 176. | |
36 | 陆俊泽, 叶加仁, 黄胜兵, 等. 西湖凹陷平北地区烃源岩特征及生排烃史[J]. 海洋石油, 2009, 29 (4): 38- 43. |
Lu Junze , Ye Jiaren , Huang Shengbing , et al. Characteristics and hydrocarbon generation-expulsion histories of source rocks of Pingbei area in Xihu Depression[J]. Offshore Oil, 2009, 29 (4): 38- 43. | |
37 | 曹倩, 宋在超, 周小进, 等. 东海盆地西湖凹陷原油地化特征及来源分析[J]. 石油实验地质, 2019, 41 (2): 251- 259. |
Cao Qian , Song Zaichao , Zhou Xiaojin , et al. Geochemical characteristics and source of crude oil in Xihu Sag, East China Sea Shelf Basin[J]. Petroleum Geology & Experiment, 2019, 41 (2): 251- 259. | |
38 | Ye J R , Qing H R , Stephen L B , et al. Petroleum systems in the offshore Xihu Basin on the continental shelf of the East China Sea[J]. AAPG Bulletin, 2007, 91 (8): 1167- 1188. |
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