岩性油气藏 ›› 2017, Vol. 29 ›› Issue (4): 138–145.doi: 10.3969/j.issn.1673-8926.2017.04.017

• 油气田开发 • 上一篇    下一篇

基于地质知识库的致密砂岩气藏储层建模——以苏里格气田苏X区块为例

杨特波1,2, 王继平1,2, 王一1,2, 付斌1,2, 薛雯1,2, 郝骞1,2   

  1. 1. 中国石油长庆油田分公司 苏里格气田研究中心, 西安 710018;
    2. 低渗透油气田勘探开发国家工程实验室, 西安 710018
  • 收稿日期:2016-07-24 修回日期:2016-09-19 出版日期:2017-07-21 发布日期:2017-07-21
  • 作者简介:杨特波(1987-),男,硕士,工程师,主要从事气田开发地质、气藏精细描述方面的研究工作。地址:(710018)陕西省西安市未央区凤城四路73号长庆苏里格大厦。Email:yangtebo2@163.com。
  • 基金资助:
    国家重大科技专项“鄂尔多斯盆地大型低渗透岩性地层油气藏开发示范工程”(编号:2016ZX05050)资助

Reservoir modeling of tight sandstone gas reservoir based on geological knowledge database:a case from Su X block in Sulige Gas Field

YANG Tebo1,2, WANG Jiping1,2, WANG Yi1,2, FU Bin1,2, XUE Wen1,2, HAO Qian1,2   

  1. 1. Sulige Gas Field Research Center, PetroChina Changqing Oilfield Company, Xi'an 710018, China;
    2. State Engineering Laboratory for Exploration and Development of Low Permeability Oil and Gas Fields, Xi'an 710018, China
  • Received:2016-07-24 Revised:2016-09-19 Online:2017-07-21 Published:2017-07-21

摘要: 针对苏里格致密砂岩气藏有效储层规模认识不清、致密气藏三维地质建模方法欠缺和水平井有效储层钻遇率低等问题,利用苏X区块169口井储层砂体解剖、实钻井对比分析与辫状河地质认识,建立储层地质知识库,再利用基于目标法建立三维训练图像,最后利用多点地质统计学建模方法建立三维地质模型。结果表明,苏里格致密砂岩气藏的辫状河砂体中,心滩有效储层规模参数为:宽度200~450 m、厚度3~10 m、长度450~1 000 m、宽/厚45:1~55:1,单一辫状河道宽度1 000~2 500 m;将以上储层地质知识库应用于三维训练图像中,体现了辫状河道与心滩规模的比例关系,及其在三维空间上的叠置迁移特征;多点地质统计学方法能够将辫状河三维训练图像成果应用到三维地质建模中,使地质模型更符合辫状河地质认识和致密砂岩气田有效储层的“砂包砂”二元结构。水平井实钻证实,地质模型能够准确预测井间有效砂体规模、指导致密砂岩气藏的水平井地质导向。以上建模方法对国内外类似致密砂岩气藏储层建模具有借鉴意义。

关键词: 云质岩, 储集空间, 物性特征, 成岩作用, 阿尔善组, 巴音都兰凹陷

Abstract: The tight sandstone gas reservoirs in Sulige Gas Field are characterized by unclear understanding of effective reservoir, lack of suitable modeling methods and low effective reservoir drilling rate of horizontal wells. Based on logging curves correlation of 169 wells in Su X block and geological understanding of braided river, the reservoir geological knowledge database was established, and combined with 3D image training, a new 3D multiplepoint geostatistics modeling method was put forward. The results show that the width, thickness, length and width-thickness ratio of braided river point bar are 200-450 m, 3-10 m, 450-1 000 m, 45:1-55:1,respectively, and the width of single braided river is 1 000-2 500 m. By using the geological knowledge database in the process of 3D image training, the geological model is more suitable to display the proportion between braided river and point bar, and reflects the overlap and migration characteristics of braided river sedimentary systems. Multi-point geostatistics method could apply 3D training image to 3D geological modeling of braided river, and presents a structure of"sand pack sand"in effective reservoir. Horizontal well drilling results confirm that the geological model could accurately predict the effective sandbodies and guide the geo-steering of the horizontal well in tight sandstone gas reservoir. This study will play a certain reference role to tight sandstone gas reservoir modeling.

Key words: dolomitic rocks, reservoir space, physical properties, diagenesis, A'ershan Formation, Bayindulan Sag

中图分类号: 

  • TE122.2
[1] 孙龙德, 邹才能, 朱如凯, 等.中国深层油气形成、分布与潜力分析.石油勘探与开发, 2013, 40(6):641-649. SUN L D, ZOU C N, ZHU R K, et al. Formation, distribution and potential of deep hydrocarbon resources in China. Petroleum Exploration and Development, 2013, 40(6):641-649.
[2] 张文才, 顾岱鸿, 赵颖, 等.苏里格气田二叠系相对低密度砂岩特征及成因.石油勘探与开发, 2004, 31(1):57-59. ZHANG W C, GU D H, ZHAO Y, et al. Characteristics and generating mechanism of Permian relative low-density sandstone in Sulige Gas Field, northwest China. Petroleum Exploration and Development, 2004, 31(1):57-59.
[3] 白振华, 詹燕涛, 王赢, 等.苏里格气田苏14井区盒8段河流相砂体展布与演化规律研究. 岩性油气藏, 2013, 25(1):56-62. BAI Z H, ZHAN Y T, WANG Y, et al. Fluvial sand bodies distribution and evolution of He 8 member in Su 14 block of Sulige Gas Field. Lithologic Reservoirs,, 2013, 25(1):56-62.
[4] 郭智, 孙龙德, 贾爱林, 等.辫状河相致密砂岩气藏三维地质建模.石油勘探与开发, 2015, 42(1):76-83. GUO Z, SUN L D, JIA A L, et al. 3D geological modeling for tight sand gas reservoir of braided river facies. Petroleum Exploration and Development, 2015, 42(1):76-83.
[5] 李明波.苏里格气田苏53区块南部地区有效砂体预测.天然气工业, 2013, 33(8):20-24. LI M B. Mapping of the effective sandstone reservoirs in southern Block Su-53, Sulige Gas Field, Ordos Basin. Natural Gas Industry, 2013, 33(8):20-24.
[6] 赵勇, 李进步, 张吉, 等.低渗透河流相储层建模方法与应用——以苏里格气田苏6加密试验区块为例. 天然气工业, 2010, 30(7):32-35. ZHAO Y, LI J B, ZHANG J, et al. Methodology for geologic modeling of low-permeability fluvial sandstone reservoirs and its application:a case study of the Su-6 infilling drilling pilot in the Sulige Gas Field. Natural Gas Industry, 2010, 30(7):32-35.
[7] 田冷, 何顺利, 顾岱鸿.苏里格气田储层三维地质建模技术研究.天然气地球科学, 2004, 15(6):593-596. TIAN L, HE S L, GU D H. The use of 3D reservoir geological modeling in Sulige Gas Field. Natural Gas Geoscience, 2004, 15(6):593-596.
[8] 赵勇, 李义军, 杨仁超, 等.苏里格气田东区山1、盒8段储层沉积微相与地质建模.矿物岩石, 2010, 30(4):86-94. ZHAO Y, LI Y J, YANG R C, et al. Sedimentary micro-facies and geological modeling of P1 s1 and P2 h8 reservoirs in the east part of Sulige Gas Field, Ordos Basin. Journal of Mineralogy and Petrology, 2010, 30(4):86-94.
[9] 何东博, 贾爱林, 田昌炳, 等.苏里格气田储集层成岩作用及有效储集层成因.石油勘探与开发, 2004, 31(3):69-71. HE D B, JIA A L, TIAN C B, et al. Diagenesis and genesis of effective sandstone reservoirs in the Sulige Gas Field. Petroleum Exploration and Development, 2004, 31(3):69-71.
[10] 牛博, 高兴军, 赵应成,, 等.古辫状河心滩坝内部构型表征与建模——以大庆油田萨中密井网区为例.石油学报, 2014, 36(1):90-100. NIU B, GAO X J, ZHAO Y C, et al. Architecture characterization and modeling of channel bar in paleo-braided river:a case study of dense well pattern area of Sazhong in Daqing Oilfield. Acta Petrolei Sinica, 2014, 36(1):90-100.
[11] 陈彬滔, 于兴河, 王天奇, 等. 砂质辫状河岩相与构型特征——以山西大同盆地中侏罗统云冈组露头为例.石油与天然气地质, 2015, 36(1):111-117. CHEN B T, YU X H, WANG T Q, et al. Lithofacies and architectural characteristics of sandy braided river deposits:a case from outcrops of the Middle Jurassic Yungang Formation in the Datong Basin, Shanxi Province. Oil & Gas Geology, 2015, 36(1):111-117.
[12] 邢宝荣.辫状河储层地质知识库构建方法——以大庆长垣油田喇萨区块葡一组储层为例. 东北石油大学学报, 2014, 38(6):46-53. XING B R. Establishment of the braided river reservoir geology bank and its application:Daqing Changyuan Oilfield La-Sa piece of PuⅠas an example. Journal of Northeast Petroleum University, 2014, 38(6):46-53.
[13] 单敬福, 李占东, 李浮萍, 等.一种厘定复合辫状河道砂体期次的新方法.天然气工业, 2015, 35(5):8-14. SHAN J F, LI Z D, LI F P, et al. A new method for determining the phases of composite braided river channel sand bodies. Natural Gas Industry, 2015, 35(5):8-14.
[14] 吴胜和, 李文克.多点地质统计学——理论、应用与展望.古地理学报, 2005, 7(1):137-144. WU S H, LI W K. Multiple-point geostatistics:theory, application and perspective. Journal of Paleogeography, 2005, 7(1):137-144.
[15] 骆杨, 赵彦超.多点地质统计学在河流相储层建模中的应用. 地质科技情报, 2008, 27(3):68-72. LUO Y, ZHAO Y C. Application of multiple-point geostatistics in fluvial reservoir stochastic modeling. Geological Science and Technology Information, 2008, 27(3):68-72.
[16] 刘跃杰,, 李继红, 陈卓, 等.基于三维训练图像的多点地质统计学岩相建模.石油化工应用, 2015, 34(9):94-100. LIU Y J, LI J H, CHEN Z, et al. Application of multiple-point geostatistics lithofacies modeling base on 3D training image. Petrochemical Industry Application, 2015, 34(9):94-100.
[17] 尹艳树, 吴胜和, 张昌民, 等.基于储层骨架的多点地质统计学方法.中国科学D辑:地球科学, 2008, 38(增刊2):157-164. YIN Y S, WU S H, ZHANG C M, et al. Based on reservoir skeleton multi-point geostatistics. Science in China(Series D:Earth Sciences), 2008, 38(Suppl 2):157-164.
[18] 段冬平, 侯加根, 刘钰铭, 等.多点地质统计学方法在三角洲前缘微相模拟中的应用.中国石油大学学报(自然科学版), 2012, 36(2):22-26. DUAN D P, HOU J G, LIU Y M, et al. Application of multipoint geostatistics in delta front microfacies simulation. Journal of China University of Petroleum(Edition of Nature Science), 2012, 36(2):22-26.
[19] 吴小军, 李晓梅, 谢丹, 等.多点地质统计学方法在冲积扇构型建模中的应用.岩性油气藏, 2015, 27(5):87-91. WU X J, LI X M, XIE D, et al. Application of multiple-point geostatistics method to structure modeling of alluvial fan. Lithologic Reservoirs, 2015, 27(5):87-91.
[20] 卢涛, 张吉, 李跃刚, 等.苏里格气田致密砂岩气藏水平井开发技术及展望.天然气工业, 2013, 33(8):38-43. LU T, ZHANG J, LI Y G, et al. Horizontal well development technology for tight sandstone gas reservoirs in the Sulige Gas Field, Ordos Basin. Natural Gas Industry, 2013, 33(8):38-43.
[21] 孙卫锋, 张吉, 马志欣, 等.苏里格气田水平井随钻地质导向技术及应用.岩性油气藏, 2015, 27(6):132-137. SUN W F, ZHANG J, MA Z X, et al. Geosteering technology of horizontal well and its application in Sulige Gas Field. Lithologic Reservoirs, 2015, 27(6):132-137.
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