油气藏评价与开发 >
2024 , Vol. 14 >Issue 4: 541 - 548
DOI: https://doi.org/10.13809/j.cnki.cn32-1825/te.2024.04.003
致密砂岩气藏高产富集规律研究——以川西坳陷新场—合兴场须家河组二段气藏为例
收稿日期: 2023-05-15
网络出版日期: 2024-09-10
基金资助
中国石化油田勘探开发事业部先导项目“新场构造带须二气藏开发先导试验研究”(YTBXD-XN2021-3)
High yield enrichment law for tight sandstone gas reservoir: A case study of the second member of Xujiahe Formation gas reservoir in Xinchang-Hexinchang gas field of western Sichuan Depression
Received date: 2023-05-15
Online published: 2024-09-10
四川盆地川西坳陷须家河组致密砂岩气藏储量巨大,具有砂体厚、物性差、非均质性强、气水分布复杂等特点,给气藏的开发评价及建产选区带来极大难度。为实现气藏高效评价开发,以新场—合兴场须家河组二段气藏为研究对象,基于气藏静、动态特征,深度分析了典型井的古、今构造位置,断层特征,裂缝和储层品质等对产能的影响,明确气井高产的主要控制因素。通过分析各控制因素的综合作用,结合成藏研究成果,探讨天然气富集高产规律,结果表明新场—合兴场须家河组二段气藏气井可分为高产高效、中产中效、低产低效3种类型。高产高效和中产中效气井产量高、稳产好,主要分布在北南向四级烃源断层和五级断层附近,裂缝发育、优质储层厚度大,具有良好的地质条件。明确了气藏富集高产遵循古、今构造控藏,烃源断层控富,有效裂缝控产,优质储层控稳的规律,为该气藏的高效开发奠定了基础。
严焕榕 , 詹泽东 , 李亚晶 , 毕有益 , 邓美洲 , 冯英 . 致密砂岩气藏高产富集规律研究——以川西坳陷新场—合兴场须家河组二段气藏为例[J]. 油气藏评价与开发, 2024 , 14(4) : 541 -548 . DOI: 10.13809/j.cnki.cn32-1825/te.2024.04.003
The tight sandstone gas reservoirs of the Xujiahe Formation in the western Sichuan Depression of the Sichuan Basin are characterized by thick sand bodies, poor physical properties, strong heterogeneity, and complex gas-water distribution. These factors significantly challenge the development evaluation and productivity zone selection for this gas reservoir. The second member of Xujiahe Formation in Xinchang-Hexingchang gas reservoir has been chosen as the subject of in-depth research to facilitate efficient evaluation and development. The research includes analyzing both static and dynamic characteristics of the gas reservoir, as well as examining the ancient and modern structural positions, fault characteristics, fractures, and reservoir quality of typical wells. These analyses help to identify the main factors controlling high production in gas wells. By considering the comprehensive effects of various controlling factors and integrating the findings from reservoir formation studies, the pattern of natural gas enrichment and high productivity is explored.The results indicate that the gas wells of the second member of Xujiahe Formation gas reservoir in Xinchang-Hexingchang can be categorized into three types: high yield and high efficiency, medium yield and medium efficiency, and low yield and low efficiency. Wells with good geological conditions—those that are high-yield and high-efficiency or medium-yield and medium-efficiency—are found to have high and stable production. They are primarily located near the north to south fourth-level and fifth-level hydrocarbon source faults, where fractures are well-developed and the thickness of high-quality reservoirs is considerable. The enrichment and high productivity of the gas reservoirs are governed by the interplay of several factors: ancient and modern structures that control the reservoirs, hydrocarbon source faults that dictate enrichment, effective fractures that enhance production, and high-quality reservoirs that ensure stability. These insights provide a solid foundation for the efficient development of gas reservoirs in the region.
[1] | 黄思婧, 侯大力, 强贤宇, 等. 致密砂岩气藏压裂直井气水两相产能评价新方法[J]. 非常规油气, 2023, 10(6): 68-74. |
[1] | HUANG Sijing, HOU Dali, QIANG Xianyu, et al. A new method for evaluating the gas-water two-phase productivity of fractured straight wells in tight sandstone gas reservoirs[J]. Unconventional Oil & Gas, 2023, 10(6): 68-74. |
[2] | 吴双, 段太忠, 商晓飞, 等. 川西坳陷XC区块须二段气藏生产模式分类及其对气藏类型的启示[J]. 东北石油大学学报, 2020, 44(3): 84-96. |
[2] | WU Shuang, DUAN Taizhong, SHANG Xiaofei, et al. Production mode classification and their insight into the gas reservoir type of Xu 2 Member gas reservoir in XC Block, Western Sichuan Depression[J]. Journal of Northeast Petroleum University, 2020, 44(3): 84-96. |
[3] | 田军, 张世华, 叶素娟, 等. 川西拗陷新场构造带须二段气藏类型划分及成藏主控因素[J]. 成都理工大学学报(自然科学版), 2017, 44(6): 659-667. |
[3] | TIAN Jun, ZHANG Shihua, YE Sujuan, et al. Classification of gas accumulation types and main controlling factors of gas accumulation of the Xu-2 Member in Xinchang structural zone, western Sichuan Depression[J]. Journal of Chengdu University of Technology(Science & Technology Edition), 2017, 44(6): 659-667. |
[4] | 杨克明, 叶军, 吕正祥. 川西坳陷上三叠统须家河组天然气分布及成藏特征[J]. 石油与天然气地质, 2004, 25(5): 501-505. |
[4] | YANG Keming, YE Jun, LYU Zhengxiang. Characteristics of gas distribution and reservoiring in Upper Triassic Xujiahe Formation in Western Sichuan Depression[J]. Oil & Gas Geology, 2004, 25(5): 501-505. |
[5] | 曹烈, 曾焱. 川西坳陷上三叠统含油气系统[J]. 新疆石油地质, 2005, 26(5): 520-524 |
[5] | CAO Lie, ZENG Yan. Petroleum system of upper triassic in West Sichuan Depression[J]. Xinjiang Petroleum Geology, 2005, 26(5): 520-524. |
[6] | 杨桂林, 任战利, 何发岐, 等. 鄂尔多斯盆地西南缘镇泾地区断缝体发育特征及油气富集规律[J]. 石油与天然气地质, 2022, 43(6); 1382-1396. |
[6] | YANG Guilin, REN Zhanli, HE Faqi, et al. Fault-fracture body growth and hydrocarbon enrichment of the Zhenjing area, the southwestern margin of the Ordos Basin[J]. Oil & Gas Geology, 2022, 43(6): 1382-1396. |
[7] | 肖正录, 李勇, 朱志勇, 等. 源储接触关系及其对近源致密油富集的影响——以鄂尔多斯盆地陇东地区长81油藏为例[J]. 石油实验地质, 2022, 44(5): 825-834. |
[7] | XIAO Zhenglu, LI Yong, ZHU Zhiyong, et al. Influence of source-reservoir contact conditions on the enrichment of near source tight oil: Taking Chang 81 reservoir in the Longdong area of Ordos Basin as an example[J]. Petroleum Geology & Experiment, 2022, 44(5): 825-834. |
[8] | 尹伟, 郑和荣, 胡宗全, 等. 鄂南镇泾地区延长组油气富集主控因素及勘探方向[J]. 石油与天然气地质, 2012, 33(2): 159-165. |
[8] | YIN Wei, ZHENG Herong, HU Zongquan, et al. Main factors controlling hydrocarbon accumulation and favorable exploration targets for the Yanchang Formation in Zhenjing area, south Ordos Basin[J]. Oil&Gas Geology, 2012, 33(2): 159-165. |
[9] | WOOD J M. Water distribution in the Montney tight gas play of the western Canadian sedimentary basin:Significance for resource evaluation[J]. SPE Journal, 2013, 16(3): 290-302. |
[10] | RAHMANIAN M R, AGUILERA R, KANTZAS A. A new unified diffusion-viscous flow model based on pore level studies of tight gas formations[J]. SPE Journal, 2013, 18(1): 38-49. |
[11] | 杨帆, 梅文博, 李亮, 等. 薄互层致密砂岩水力压裂裂缝扩展特征研究[J]. 煤田地质与勘探, 2023, 51(7): 61-71. |
[11] | YANG Fan, MEI Wenbo, LI Liang, et al. Propagation of hydraulic fractures in thin interbedded tight sandstones[J]. Coal Geology & Exploration, 2023, 51(7): 61-71. |
[12] | 邢慧通, 张晓丽, 何金先, 等. 滇东威信地区龙潭组致密砂岩矿物组成特征及其油气地质意义[J]. 煤田地质与勘探, 2022, 50(4): 52-60. |
[12] | XING Huitong, ZHANG Xiaoli, HE Jinxian, et al. Mineral composition characteristics and petroleum geological significance of tight sandstone of Longtan Formation in Weixin area, eastern Yunnan[J]. Coal Geology & Exploration, 2022, 50(4): 52-60. |
[13] | 李文厚, 魏红红, 马振芳, 等. 苏里格庙气田碎屑岩储集层特征与天然气富集规律[J]. 石油与天然气地质, 2022, 23(4): 387-391. |
[13] | LI Wenhou, WEI Honghong, MA Zhenfang, et al. Characteristics of detrital reservoirs and regularity of gas concentration in Suligemiao Gas Field[J]. Oil & Gas Geology, 2022, 23(4): 387-391. |
[14] | 李宏伟, 范军侠, 袁士义, 等. 苏里格气田下石盒子组层序地层学与天然气高产富集区分布规律[J]. 石油勘探与开发, 2006, 33(3): 340-344. |
[14] | LI Hongwei, FAN Junxia, YUAN Shiyi, et al. Sequence stratigraphy and the distribution of natural gas enrichment and high production area in Lower Shihezi Formation, Sulige gas field, Ordos Basin[J]. Petroleum Exploration and Development, 2006, 33(3): 340-344. |
[15] | 罗东明, 陈舒薇, 张广权, 等. 大牛地气田上古生界沉积相与天然气富集规律的再认识[J]. 石油与天然气地质, 2011, 32(3): 368-374. |
[15] | LUO Dongming, CHEN Shuwei, ZHANG Guangquan, et al. New understandings of the Upper Paleozoic sedimentary facies and gas accumulation patterns in Daniudi Gas Field[J]. Oil & Gas Geology, 2011, 32(3): 368-374. |
[16] | 郑和荣, 刘忠群, 徐士林, 等. 四川盆地中国石化探区须家河组致密砂岩气勘探开发进展与攻关方向[J]. 石油与天然气地质, 2021, 42(4): 765-783. |
[16] | ZHENG Herong, LIU Zhongqun, XU Shilin, et al. Progress and key research directions of tight gas exploration and development in Xujiahe Formation, Sinopec exploration areas, Sichuan Basin[J]. Oil & Gas Geology, 2021, 42(4): 765-783. |
[17] | 谢刚平, 叶素娟, 田苗, 等. 川西坳陷致密砂岩气藏勘探开发实践新认识[J]. 天然气工业, 2014, 34(1): 44-53. |
[17] | XIE Gangping, YE Sujuan, TIAN Miao, et al. New understandings of exploration and development practices in tight sandstone gas reservoirs in Western Sichuan Depression[J]. Natural Gas Industry, 2014, 34(1): 44-53. |
[18] | 魏国齐, 张福东, 李君, 等. 中国致密砂岩气成藏理论进展[J]. 天然气地球科学, 2016, 27(2): 199-210. |
[18] | WEI Guoqi, ZHANG Fudong, LI Jun, et al. New progress of tight sand gas accumulation theory and favorable exploration zones in China[J]. Natural Gas Geoscience, 2016, 27(2): 199-210. |
[19] | 王志康, 林良彪, 余瑜, 等. 川西新场地区须家河组第二段优质储层主控因素[J]. 成都理工大学学报(自然科学版), 2020, 47(6): 661-672. |
[19] | WANG Zhikang, LIN Liangbiao, YU Yu, et al. The main controlling factors of high quality reservoir in the second member of Xujiahe Formation in Xinchang area, Western Sichuan, China[J]. Journal of Chengdu University of Technology(Science & Technology Edition), 2020, 47(6): 661-672. |
[20] | 王启颖, 詹泽东, 严焕榕, 等. 窄河道致密砂岩气藏高效井识别方法研究及应用——以川西地区窄河道致密砂岩气藏为例[J]. 科技与产业, 2021, 21(9): 327-331. |
[20] | WANG Qiying, ZHAN Zedong, YAN Huanrong, et al. Research and application of ways to identify efficient wells for tight sandstone gas reservoir of narrow channel: A case study of narrow channel tight sandstone gas reservoirs in Western Sichuan as an example[J]. Science Technology and Industry, 2021, 21(9): 327-331. |
[21] | 戴金星, 倪云燕, 邹才能, 等. 四川盆地须家河组煤系烷烃气碳同位素特征及气源对比意义[J]. 石油与天然气地质, 2009, 30(5): 519-529. |
[21] | DAI Jinxing, NI Yunyan, ZOU Caineng, et al. Carbon isotope features of alkane gases in the coal measures of the Xujiahe Formation in the Sichuan Basin and their significance to gas-source correlation[J]. Oil & Gas Geology, 2009, 30(5): 519-529. |
[22] | 秦胜飞, 戴金星, 王兰生. 川西前陆盆地次生气藏天然气来源追踪[J]. 地球化学, 2007, 36(4): 368-374. |
[22] | QIN Shengfei, DAI Jinxing, WANG Lansheng, et al. Different origins of natural gas in secondary gas pool in Western Sichuan foreland basin[J]. Geochimica, 2007, 36(4): 368-374. |
[23] | 白帆, 吴小奇, 曾华盛, 等. 川西新场地区须二段天然气成因类型和来源[J]. 石油实验地质, 2015, 37(5): 633-640. |
[23] | BAI Fan, WU Xiaoqi, ZENG Huasheng, et al. Genetic types and sources of natural gases reservoired in the second member of the Xujiahe Formation in the Xinchang area of the Western Sichuan Depression[J]. Petroleum Geology & Experiment, 2015, 37(5): 633-640. |
[24] | 郭彤楼, 熊亮, 叶素娟, 等. 输导层(体)非常规天然气勘探理论与实践——四川盆地新类型页岩气与致密砂岩气突破的启示[J]. 石油勘探与开发, 2023, 50(1): 24-37. |
[24] | GUO Tonglou, XIONG Liang, YE Sujuan, et al. Theory and practice of unconventional gas exploration in carrier beds: Insight from the breakthrough of new type of shale gas and tight gas in Sichuan Basin, SW China[J]. Petroleum Exploration and Development, 2023, 50(1): 24-37. |
[25] | 李伟, 王雪柯, 赵容容, 等. 川西前陆盆地上三叠统须家河组致密砂岩气藏超压体系形成演化与天然气聚集关系[J]. 天然气工业, 2022, 42(1): 25-39. |
[25] | LI Wei, WANG Xueke, ZHAO Rongrong, et al. Formation and evolution of overpressure system in tight sandstone gas reservoir of Xujiahe Formation of Upper Triassic in the Western Sichuan foreland basin and its relationship with natural gas accumulation[J]. Natural Gas Industry, 2022, 42(1): 25-39. |
[26] | 郭迎春, 庞雄奇, 陈冬霞, 等. 川西坳陷中段须二段致密砂岩储层致密化与相对优质储层发育机制[J]. 吉林大学学报(地球科学版), 2012, 42((增刊2): 21-32. |
[26] | GUO Yingchun, PANG Xiongqi, CHEN Dongxia, et al. Densification of tight gas sandstones and formation mechanism of relatively high-quality reservoir in the second member of the Xujiahe Formation, Western Sichuan Depression[J]. Journal of Jilin University(Earth Science Edition), 2012, 42 (suppl.2): 21-32. |
[27] | 张道伟, 杨雨. 四川盆地陆相致密砂岩气勘探潜力与发展方向[J]. 天然气工业, 2022, 42(1): 1-11. |
[27] | ZHANG Daowei, YANG Yu. Exploration potential and development direction of continental tight sandstone gas in the Sichuan Basin[J]. Natural Gas Industry, 2022, 42(1): 1-11. |
/
〈 |
|
〉 |