Three-dimensional characterization of natural gas heterogeneity controlled by gypsum-salt layer in the Feixianguan Formation in the Tieshanpo area, Sichuan Basin
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摘要:
膏岩层控气是重要的天然气富集成藏模式,现有膏岩层控气研究集中于实验测试与定性描述,缺乏对膏盐层分布的三维表征。为此,研发了膏盐层与气水层井震结合相控三维建模新技术,具体包括膏盐层测井解释及相控三维建模、膏盐层地震遗传反演三维建模、膏盐层井震结合三维建模、沉积微相控制的气水层三维建模及膏盐层与气水层三维融合建模5个关键技术环节,应用于分析四川盆地铁山坡飞仙关组膏盐层的控气性,建立了膏盐层与气水层井震结合相控三维模型,定量刻画了研究区内膏盐层的控气非均质性,实现了对膏盐层控气的三维可视化定量表征。结果表明:铁山坡飞仙关组膏盐层平面上除Ⅰ区和Ⅱ区中部局部范围外,其余大部分区域呈连续片状分布,纵向上具有多层、薄层、厚度强非均质分布等特征;呈现出封盖控气性、降储控气性和使气藏复杂化3类控气特征模式,显示了研究区膏盐层控气的强非均质性。研究成果为研究区天然气非均衡规模高效开发提供了可靠的模型基础与地质认识。
Abstract:Objective Natural gas heterogeneity controlled by gypsum-salt layers is a significant model for enrichment and accumulation. While previous studies have primarily focused on experimental testing and qualitative descriptions, they have lacked three-dimensional characterization of the gypsum-salt layers distribution. This study proposes a novel three-dimensional modeling technique that integrates well-seismic data with sedimentary microfacies control in both the gypsum-salt layer and the gas-water layer.
Methods The proposed technique encompasses five key technical aspects: (1) logging interpretation and 3D modeling of the gypsum-salt layer controlled by sedimentary microfacies, (2) seismic genetic inversion-based 3D modeling of the gypsum-salt layer guided by sedimentary microfacies, (3) well-seismically integrated 3D modeling of the gypsum-salt layer, (4) 3D modeling of gas-water distribution influenced by sedimentary microfacies, and (5) fusion-based 3D modeling of both the gypsum-salt and gas-water layers.
Results This method was applied to assess the influence of the gypsum-salt layer within the Feixianguan Formation in the Tieshanpo gas field of the Sichuan Basin on gas accumulation characteristics. Accurate 3D geological models were constructed that integrate well-seismic data with sedimentary microfacies control for both the gypsum-salt and gas-water layers. The results indicated that, except for some localized areas, a continuous distribution was observed across most regions of the Feixianguan Formation in the Tieshanpo area. Additionally, the formation exhibited multilayered characteristics with significant longitudinal thickness heterogeneity. Three distinct models were developed to illustrate the effects of gas capping, reduced gas storage capacity, and complex reservoir conditions resulting from the heterogeneous influence of the gypsum-salt layer.
Conclusion These findings provide essential geological insights that can inform the development of effective strategies targeting natural gas reserves at non-equilibrium scales.
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表 1 四川盆地铁山坡飞仙关组膏盐层、气/水层测录井解释成果统计
Table 1. Statistical analysis of gypsum-salt layer and gas-water layer well logging in the Feixianguan Formation in the Tieshanpo area, Sichuan Basin
井名 层类型 层数/层 累计厚
度/m最大单层
厚度/m最小单层
厚度/m日产气量/
104m3日产水
量/m3N1 膏盐层 0 0.0 0.0 0.0 39.2 0.0 气/水层 5/0 137.6/0.0 103.0/0.0 3.3/0.0 N2 膏盐层 5 16.5 4.0 1.0 30.3 0.0 气/水层 5/0 58.5/0.0 43.1/0.0 1.5/0.0 N3 膏盐层 10 24.5 4.0 1.0 0.0 13.7 气/水层 0/1 0.0/56.6 0.0/56.6 0.0/56.6 N4 膏盐层 8 47.5 14.0 1.0 0.0 2.4 气/水层 0/1 0/20.0 0.0/20.0 0.0/20.0 表 2 四川盆地铁山坡飞仙关组井震结合三维模型中膏盐层分布特征参数统计
Table 2. Summary of 3D modeling results of the gypsum-salt layer in the Feixianguan Formation in the Tieshanpo area, Sichuan Basin
断块区 断块区面积/
km2膏盐/气层覆盖
面积/km2膏盐/气层覆盖
比例/%膏盐/气层平均
厚度/m膏盐/气层最大
厚度/m膏盐/气层最小
厚度/m膏盐/气层厚度
标准差Ⅰ 3.69 0.72/3.51 19.5/95.1 0.64/10.21 21.67/40.10 0/0.14 2.12/8.12 Ⅱ 20.48 15.97/8.84 78.0/43.2 7.07/44.10 65.39/185.38 0/0 7.57/28.42 Ⅲ 16.55 16.55/3.85 100/23.3 22.34/102.76 70.15/380.77 0/0 10.73/66.83 -
[1] LI M P,CHEN Z H,YI S W,et al. Origin and accumulation mechanisms of deep Paleozoic oil and gas:A case study of the central Tarim Basin,Western China[J]. Journal of Petroleum Science and Engineering,2022,208:109634. doi: 10.1016/j.petrol.2021.109634 [2] 胡素云,石书缘,王铜山,等. 膏盐环境对碳酸盐岩层系成烃、成储和成藏的影响[J]. 中国石油勘探,2016,21(2):20-27.HU S Y,SHI S Y,WANG T S,et al. Effect of gypsum-salt environment on hydrocarbon generation,reservoir-forming and hydrocarbon accumulation in carbonate strata[J]. China Petroleum Exploration,2016,21(2):20-27. (in Chinese with English abstract [3] ZHU Z,YIN H W,JIA D,et al. Impact of gypsolith on the preservation and exploration prospect of shale gas in Sichuan Basin[J]. Natural Gas Geoscience,2015,26(8):1472-1480. [4] YANG L L,LI X W,ZHUO Q G,et al. Effects of gypsum-salt rock on mineral transformations in a saline lacustrine basin:Significance to reservoir development[J]. Journal of Petroleum Science and Engineering,2022,211:110240. doi: 10.1016/j.petrol.2022.110240 [5] 王东旭,曾溅辉,宫秀梅. 膏盐岩层对油气成藏的影响[J]. 天然气地球科学,2005,16(3):329-333.WANG D X,ZENG J H,GONG X M. Impact of gypsolith on the formation of oil & gas reservoir[J]. Natural Gas Geoscience,2005,16(3):329-333. (in Chinese with English abstract [6] YANG H,BAO H P,MA Z R. Reservoir-forming by lateral supply of hydrocarbon:A new understanding of the formation of Ordovician gas reservoirs under gypsolyte in the Ordos Basin[J]. Natural Gas Industry B,2014,1(1):24-31. doi: 10.1016/j.ngib.2014.10.003 [7] 王坤,王明磊,梁坤,等. 四川盆地坡西地区长兴组−飞仙关组礁滩体发育特征与储集性[J]. 中外能源,2022,27(12):40-49.WANG K,WANG M L,LIANG K,et al. Development characteristics and reservoir properties of reef and oolitic shoal of Changxing and Feixianguan Formation,Poxi area,Sichuan Basin[J]. Sino-Global Energy,2022,27(12):40-49. (in Chinese with English abstract [8] HE Z L,JIN Z J,LI S J,et al. Prototypes,modifications,and hydrocarbon enrichment variations in basins influenced by Tethyan evolution:A comparative analysis of the Persian Gulf Basin and the Sichuan Basin[J]. Science China Earth Sciences,2023,66(12):2871-2897. doi: 10.1007/s11430-023-1207-x [9] ZHANG X,ZHU H H,LEI B J,et al. Sedimentary and diagenetic facies of tidal flat in epeiric sea and its related descriptive method:A case of Ma51-4 submember in Jingbian gas field of Ordos Basin,China[J]. Petroleum,2021,7(2):123-134. doi: 10.1016/j.petlm.2020.06.002 [10] 于洲,范立勇,任军峰,等. 鄂尔多斯盆地寒武系−奥陶系天然气成藏模式及有利勘探区[J]. 天然气工业,2024,44(8):44-57.YU Z,FAN L Y,REN J F,et al. Natural gas accumulation models and favorable exploration areas of the Cambrian-Ordovician in the Ordos Basin[J]. Natural Gas Industry,2024,44(8):44-57. (in Chinese with English abstract [11] 冯许魁,陈友智,臧殿光,等. 四川盆地东缘寒武系盐下油气勘探领域探讨[J]. 地质论评,2024,70(3):1061-1070.FENG X K,CHEN Y Z,ZANG D G,et al. Study on the structural inheritance of Dengying Formation in Sichuan Basin[J]. Geological Review,2024,70(3):1061-1070. (in Chinese with English abstract [12] 杜金虎,徐春春,汪泽成,等. 四川盆地二叠−三叠系礁滩天然气勘探[M]. 北京:石油工业出版社,2010.DU J H,XU C C,WANG Z C,et al. Natural gas exploration of Permian-Triassic reef & oolite in Sichuan Basin[M]. Beijing:Petroleum Industry Press,2010. (in Chinese) [13] 杨威,刘满仓,魏国齐,等. 四川盆地中三叠统雷口坡组岩相古地理与规模储集体特征[J]. 天然气地球科学,2021,32(6):781-793.YANG W,LIU M C,WEI G Q,et al. Sedimentary characteristics and sequence lithofacies paleogeography of the semi-closed carbonate platform of the Leikoupo Formation in Sichuan Basin[J]. Natural Gas Geoscience,2021,32(6):781-793. (in Chinese with English abstract [14] 李剑,杨春龙,谢武仁,等. 四川盆地安岳气田震旦系台缘带和台内地区天然气成藏差异性及勘探领域[J]. 石油与天然气地质,2023,44(1):34-45.LI J,YANG C L,XIE W R,et al. Differences of natural gas accumulation and play fairways in the marginal zone and interior of Sinian Platform in Anyue gas field,Sichuan Basin[J]. Oil & Gas Geology,2023,44(1):34-45. (in Chinese with English abstract [15] LIU S G,ZHANG Z J,HUANG W M,et al. Formation and destruction processes of Upper Sinian oil-gas pools in the Dingshan-Lintanchang structural belt,southeast Sichuan Basin,China[J]. Petroleum Science,2010,7(3):289-301. doi: 10.1007/s12182-010-0071-3 [16] 孟庆强,李京洲,刘文汇,等. 膏盐岩含量对成熟阶段页岩生烃影响的模拟实验[J]. 特种油气藏,2022,29(5):113-118.MENG Q Q,LI J Z,LIU W H,et al. Simulation study on the effect of gypsum-salt content on hydrocarbon generation in mature stage shale[J]. Special Oil & Gas Reservoirs,2022,29(5):113-118. (in Chinese with English abstract [17] 李广才,王兴宇,李培,等. 地震正演模拟技术在膏盐岩识别中的应用[J]. 中国煤炭地质,2023,35(2):67-72.LI G C,WANG X Y,LI P,et al. Applications of seismic forward modeling technology for identifying of gypsum-salt rocks[J]. Coal Geology of China,2023,35(2):67-72. (in Chinese with English abstract [18] 赵恒,刘文汇,李艳杰,等. 海相膏盐岩层系烃源岩形成演化特征初探[J]. 海相油气地质,2019,24(3):1-7.ZHAO H,LIU W H,LI Y J,et al. A preliminary study on hydrocarbon generation and evaluation of marine gypsum/salt-bearing source rocks[J]. Marine Origin Petroleum Geology,2019,24(3):1-7. (in Chinese with English abstract [19] 朱童,王兴志,沈忠民,等. 川中雷口坡组膏盐岩成因及对储层的影响[J]. 中国地质,2014,41(1):122-134.ZHU T,WANG X Z,SHEN Z M,et al. The origin of gypsum-salt rock of Leikoupo Formation and its influence on the gas reservoir in central Sichuan Basin[J]. Geology in China,2014,41(1):122-134. (in Chinese with English abstract [20] 欧成华,冯国庆,李波. 油气藏开发地质建模:富媒体[M]. 北京:石油工业出版社,2018.OU C H,FENG G Q,LI B. Geological modeling of oil and gas reservoir development[M]. Beijing:Petroleum Industry Press,2018. (in Chinese) [21] 欧成华,李朝纯. 用于带水碳酸盐岩气藏气水分布表征的六阶段建模方法:CN104183018B[P]. 2017-06-23.OU C H,LI C C. A six-stage modeling method for gas-water distribution characterization of carbonate gas reservoirs with water:CN104183018B[P]. 2017-06-23. (in Chinese) [22] 欧成华,李朝纯. 用于多层砂岩气藏气层品质分类表征的六阶段建模方法:CN104156617B[P]. 2017-06-23.OU C H,LI C C. A six-stage modeling method for gas quality classification and characterization of multi-layer sandstone gas reservoirs:CN104156617B [P]. 2017-06-23. (in Chinese) [23] 江青春,李建忠,汪泽成,等. 四川盆地东部地区寒武系膏盐岩厚度定量预测及其油气地质意义[J]. 天然气工业,2022,42(5):34-46.JIANG Q C,LI J Z,WANG Z C,et al. Quantitative thickness prediction of Cambrian gypsum-salt rocks in eastern Sichuan Basin and its petroleum significance[J]. Natural Gas Industry,2022,42(5):34-46. (in Chinese with English abstract [24] 花卫华,宿紫莹,朱玉华,等. 大范围地质体分块建模方法[J]. 地质科技通报,2023,42(6):257-265.HUA W H,SU Z Y,ZHU Y H,et al. Large-range geological block modeling method[J]. Bulletin of Geological Science and Technology,2023,42(6):257-265. (in Chinese with English abstract [25] 梁欣阳,付德奎,张宁,等. 川东北普光地区下三叠统飞仙关组岩溶段的地质意义[J]. 地质科技通报,2022,41(5):386-394.LIANG X Y,FU D K,ZHANG N,et al. Geological significance of karst section of Lower Triassic Feixianguan Formation in Puguang area,Northeast Sichuan[J]. Bulletin of Geological Science and Technology,2022,41(5):386-394. (in Chinese with English abstract [26] 李阳,代宗仰,张洁伟,等. 基于无监督学习的多参数储层评价:以蒲包山地区下三叠统飞仙关组礁滩储层为例[J]. 地质科技通报,2023,42(5):285-292.LI Y,DAI Z Y,ZHANG J W,et al. Multiparameter reservoir evaluation method based on unsupervised learning:A case study of the reef beach reservoir of the Lower Triassic Feixianguan Formation in the Pubaoshan area[J]. Bulletin of Geological Science and Technology,2023,42(5):285-292. (in Chinese with English abstract [27] HE Y L,FU X Y,LIU B,et al. Control of oolitic beaches sedimentation and diagenesis on the reservoirs in Feixianguan Formation,northeastern Sichuan Basin[J]. Petroleum Exploration and Development,2012,39(4):466-475. doi: 10.1016/S1876-3804(12)60063-9 [28] 李阳,王兴志,蒲柏宇,等. 四川盆地开江−梁平海槽东侧三叠系飞仙关组鲕滩沉积特征[J]. 岩性油气藏,2022,34(2):116-130.LI Y,WANG X Z,PU B Y,et al. Sedimentary characteristics of oolitic beach of Triassic Feixianguan Formation in eastern Kaijiang-Liangping trough,Sichuan Basin[J]. Lithologic Reservoirs,2022,34(2):116-130. (in Chinese with English abstract [29] 唐德海,段金宝. 四川盆地嘉陵江组嘉四段−嘉五段膏盐岩分布及油气意义[J]. 特种油气藏,2017,24(2):80-85.TANG D H,DUAN J B. Distribution and reservoir significance of gypsum salt rocks in Jia-4-Jia-5 interval of Jialingjiang Formation in the Sichuan Basin[J]. Special Oil & Gas Reservoirs,2017,24(2):80-85. (in Chinese with English abstract [30] ZHANG X L,GAO Z Q,MASELLI V,et al. Tectono-sedimentary characteristics and controlling factors of the Lower-Middle Cambrian gypsum-salt rocks in the Tarim Basin,Northwest China[J]. Marine and Petroleum Geology,2023,151:106189. doi: 10.1016/j.marpetgeo.2023.106189 [31] ZHENG Z Y,ZUO Y H,WEN H G,et al. Natural gas characteristics and gas-source comparisons of the Lower Triassic Feixianguan Formation,Eastern Sichuan Basin,China[J]. Petroleum Science,2023,20(3):1458-1470. doi: 10.1016/j.petsci.2023.02.005 [32] 吴小力,刘翰林,李荣西,等. 中国陆相蒸发岩盆地中烃源岩的发育规律及其生排烃特征研究进展[J]. 地质科技情报,2017,36(4):183-192.WU X L,LIU H L,LI R X,et al. Progress in researches of developmental rule and the hydrocarbon generation and expulsion characteristics of hydrocarbon source rocks in terrestrial evaporite basins of China[J]. Geological Science and Technology Information,2017,36(4):183-192. (in Chinese with English abstract [33] 王小军,王婷婷,曹剑. 玛湖凹陷风城组碱湖烃源岩基本特征及其高效生烃[J]. 新疆石油地质,2018,39(1):9-15.WANG X J,WANG T T,CAO J. Basic characteristics and highly efficient hydrocarbon generation of alkaline-lacustrine source rocks in Fengcheng Formation of Mahu Sag[J]. Xinjiang Petroleum Geology,2018,39(1):9-15. (in Chinese with English abstract [34] OU C H,WANG X L,LI C C,et al. Three-dimensional modelling of a multi-layer sandstone reservoir:The Sebei gas field,China[J]. Acta Geologica Sinica,2016,90(1):209-221. doi: 10.1111/1755-6724.12652 [35] OU C H,LI C C,MA Z G. 3D modeling of gas/water distribution in water-bearing carbonate gas reservoirs:The Longwangmiao gas field,China[J]. Journal of Geophysics and Engineering,2016,13(5):745-757. doi: 10.1088/1742-2132/13/5/745 [36] ZHOU F D,YAO G Q,TYSON S. Impact of geological modeling processes on spatial coalbed methane resource estimation[J]. International Journal of Coal Geology,2015,146:14-27. doi: 10.1016/j.coal.2015.04.010 [37] DING S F,SU C Y,YU J Z. An optimizing BP neural network algorithm based on genetic algorithm[J]. Artificial Intelligence Review,2011,36(2):153-162. doi: 10.1007/s10462-011-9208-z [38] 常德宽,雍学善,王一惠,等. 基于深度卷积神经网络的地震数据断层识别方法[J]. 石油地球物理勘探,2021,56(1):1-8.CHANG D K,YONG X S,WANG Y H,et al. Seismic fault interpretation based on deep convolutional neural networks[J]. Oil Geophysical Prospecting,2021,56(1):1-8. (in Chinese with English abstract [39] 王一鸣,宋先海,张学强. 应用人工神经网络算法的地震面波非线性反演[J]. 石油地球物理勘探,2021,56(5):979-991.WANG Y M,SONG X H,ZHANG X Q. Research on nonlinear inversion of seismic surface waves based on artificial neural network algorithm[J]. Oil Geophysical Prospecting,2021,56(5):979-991. (in Chinese with English abstract [40] 冯琼,魏水建. 中上扬子区膏岩盖层的测井识别[J]. 石油实验地质,2011,33(1):100-104.FENG Q,WEI S J. Well logging identification of gypsum cap rocks in Middle-Upper Yangtze region[J]. Petroleum Geology & Experiment,2011,33(1):100-104. (in Chinese with English abstract [41] 徐振平, 陈书平, 罗彩明, 等. 塔里木盆地中寒武统膏盐岩分布及封闭性评价[J]. 中国石油勘探,2023,28(5):54-67.XU Z P, CHEN S P, LUO C M, et al. Distribution and sealing capacity evaluation of gypsum-salt rocks in the Middle Cambrian in Tarim Basin[J]. China Petroleum Exploration,2023,28(5):54-67.(in Chinese with English abstract -