岩性油气藏 ›› 2023, Vol. 35 ›› Issue (6): 7281.doi: 10.12108/yxyqc.20230609
范蕊1, 刘卉1, 杨沛广2, 孙星1, 马辉1, 郝菲1, 张珊珊1
FAN Rui1, LIU Hui1, YANG Peiguang2, SUN Xing1, MA Hui1, HAO Fei1, ZHANG Shanshan1
摘要: 利用地震、钻井及测井等资料,结合地震正演模拟和地震属性,对阿曼盆地A区白垩系泥岩充填型碳酸盐岩溶蚀沟谷的地震反射特征及其展布规律进行了详细研究,并对该区油气成藏模式进行了刻画。研究结果表明:①阿曼盆地A区西部—中部发育1个泥岩充填型溶蚀沟谷体系,其在地震上表现为同相轴下凹、间断、弱振幅反射等特征,且地震资料可识别出深度大于3 m、宽度大于10 m的沟谷。②通过优选地震属性,发现研究区的欧拉曲率属性能更好地压制密集断层的影响,对溶蚀沟谷的识别效果优于相干属性和曲率属性。③新识别技术发现了一系列溶蚀沟谷-泥岩充填遮挡的复合型圈闭,面积共计80.66 km2,且新钻井揭示了其良好的油气显示,证实了该技术的可靠性。
中图分类号:
[1] ALSHARHAN A S,NAIRN A E M. Sedimentary basins and petroleum geology of the Middle East[M]. Amsterdam:Elsevier Science,1997:1-942. [2] 张义楷,王志松,史长林,等.伊拉克米桑油田碳酸盐岩储层成岩作用[J].科学技术与工程,2016,16(5):45-53.ZHANG Yikai,WANG Zhisong,SHI Changlin,et al. Carbonate reservoir characteristics and diagenesis in Missan Oilfield,Iraq[J]. Science Technology and Engineering,2016,16(5):45-53. [3] SADOONI F N. The nature and origin of Upper Cretaceous basin margin rudist buildups of the Mesopotamian Basin. Southern Iraq,with consideration of possible hydrocarbon stratigraphic entrapment[J]. Cretaceous Research,2005,26(2):213-224. [4] 孙亮,李勇,李保柱.中东地区碳酸盐岩油藏分类评价方法与注水开发对策[J].石油学报,2022,43(2):270-280.SUN Liang,LI Yong,LI Baozhu. Classified evalution methods and waterflood development strategies for carbonate reservoirs in the Middle East[J]. Acta Petrolei Sinica,2022,43(2):270-280. [5] 刘航宇,田中元,刘波,等.中东地区巨厚强非均质碳酸盐岩储层分类与预测:以伊拉克W油田中白垩统Mishrif组为例[J].石油学报,2019,40(6):677-691.LIU Hangyu,TIAN Zhongyuan,LIU Bo,et al. Classification and prediction of giant thick strongly heterogeneous carbonate reservoirs in the Middle East area:A case study of MidCretaceous Mishrif Formation in the W oilfield of Iraq[J]. Acta Petrolei Sinica,2019,40(6):677-691. [6] 熊加贝,何登发.全球碳酸盐岩地层-岩性大油气田分布特征及其控制因素[J].岩性油气藏,2022,34(1):187-200.XIONG Jiabei,HE Dengfa. Distribution characteristics and controlling factors of global giant carbonate stratigraphiclithologic oil and gas fields[J]. Lithologic Reservoirs,2022,34(1):187-200. [7] 宋钰.阿曼盆地石油地质特征及油气资源潜力分析[D].北京:中国地质大学(北京),2016.SONG Yu. Petroleum characteristics and its resource potential in the Oman Basin,Oman[D]. Beijing:China University of Geosciences(Beijing),2016. [8] 倪祥龙,谭开俊,杜斌山,等.应用相干能量梯度预测溶蚀沟谷体系:四川盆地威远地区茅口组为例[R].成都:中国石油学会2019年物探技术研讨会,2019.NI Xianglong,TAN Kaijun,DU Binshan,et al. Application of coherent energy gradient in dissolution valley system identification:A case from Maokou Formation of Weiyuan area,Sichuan Basin[R]. Chengdu:2019 Geophysical Exploration Technology Seminar of Chinese Petroleum Society,2019. [9] 李浩武,童晓光,王建军,等.阿曼盆地下古生界碎屑岩成藏组合地质特征[J].西南石油大学学报(自然科学版),2014,36(6):47-59.LI Haowu,TONG Xiaoguang,WANG Jianjun,et al. The geological characteristics and hydrocarbon accumulation model of the Lower Paleozoic clastic play,Oman Basin,Middle East[J]. Journal of Southwest Petroleum University(Science&Technology Edition),2014,36(6):47-59. [10] 陈杰,王文训,牛林林,等.阿曼盆地北部古近系碳酸盐岩油藏成藏特征及主控因素[J].油气地质与采收率,2021,28(1):47-56.CHEN Jie,WANG Wenxun,NIU Linlin,et al. Characteristics and main controlling factors of hydrocarbon accumulation in Paleogene carbonate reservoir,north of Oman Basin[J]. Petroleum Geology and Recovery Efficiency,2021,28(1):47-56. [11] 范嘉松.世界碳酸盐岩油气田的储层特征及其成藏的主要控制因素[J].地学前缘,2005,12(3):23-30.FAN Jiasong. Characteristics of carbonate reservoirs for oil and gas fields in the world and essential controlling factors for their formation[J]. Earth Science Frontiers,2005,12(3):23-30. [12] 龚洪林.礁滩体储层正演模拟研究[J].新疆石油天然气,2010,6(1):1-5.GONG Honglin. Forward modeling for reef shoal reservoirs[J]. Xinjiang Oil&Gas,2010,6(1):1-5. [13] 李三福,肖为,朱美娟,等.深水礁滩相储层地震模型的正演模拟及其地震响应特征分析[J].工程地球物理学报,2011,8(1):91-96.LI Sanfu,XIAO Wei,ZHU Meijuan,et al. Forward modeling and analysis of seismic response characteristic in the deep water reef-flat Reservoirs model[J]. Chinese Journal of Engineering Geophysics,2011,8(1):91-96. [14] 张光荣,张旋,喻颐,等.四川盆地深层海相碳酸盐岩缝洞型储层预测关键技术:以SN地区茅口组为例[J].天然气地球科学,2017,28(8):1235-1242.ZHANG Guangrong,ZHANG Xuan,YU Yi,et al. Key techniques for prediction of fractured carbonate reservoirs in deep marine carbonate rocks in Sichuan Basin:A case study of the Maokou Formation in SN area[J]. Natural Gas Geoscience,2017,28(8):1235-1242. [15] 刘振峰,曲寿利,孙建国,等.地震裂缝预测技术研究进展[J].石油物探,2012,51(2):191-195.LIU Zhenfeng,QU Shouli,SUN Jianguo,et al. Progress of seismic fracture characterization technology[J]. Geophysical Prospecting for Petroleum,2012,51(2):191-195. [16] 秦瑞,白军,郑超,等.基于分倾角扫描的相干属性在断层识别中的应用[J].物探化探计算技术,2016,38(5):656-659.QIN Rui,BAI Jun,ZHENG Chao,et al. The application of coherence attribute based on separated dip scanning in fault identification[J]. Computing Techniques for Geophysical and Geochemical Exploration,2016,38(5):656-659. [17] 程谦,阎建国,朱强,等.礁体及沉积特征在高分辨率相干属性剖面上的特征分析[J].物探化探计算技术,2010,32(1):48-53.CHENG Qian,YAN Jianguo,ZHU Qiang,et al. Reef and sedimentary settings characterization in high-resolution coherency sections[J]. Computing Techniques for Geophysical and Geochemical Exploration,2010,32(1):48-53. [18] 张量,魏水建.多相干属性分析技术在断裂和裂缝识别中的应用:以松南气田营城组火山岩为例[J].中外能源,2012,17(7):39-42.ZHANH Liang,WEI Shuijian. Application of multi-coherence attributes analysis technique to fault and fracture identification:A case study of the Yingcheng Formation volcanics in Songnan Gas Field[J]. Sino-Global Energy,2012,17(7):39-42. [19] 崔立杰,何幼斌,王锦喜,等.基于层面的地震曲率属性在碳酸盐岩断裂预测中的应用:以塔里木盆地塔北某区块为例[J].岩性油气藏,2012,24(1):92-96.CUI Lijie,HE Youbin,WANG Jinxi,et al. Application of seismic curvature based on horizon to carbonate fault prediction:An example of an area in Tabei,Tarim Basin[J]. Lithologic Reservoirs,2012,24(1):92-96. [20] 刘爽.体曲率属性在地层非均质性检测中的应用[J].中国石油和化工标准与质量,2012,32(8):17-18.LIU Shuang. Application of volume curvature attribute in detection of formation heterogeneity[J]. China Petroleum and Chemical Standard and Quality,2012,32(8):17-18. [21] 李维,陈刚,王东学,等.利用最大正、负曲率识别准噶尔盆地吉木萨尔凹陷芦草沟组甜点段微小断层开启性[J].石油地球物理勘探,2022,57(1):184-193.LI Wei,CHEN Gang,WANG Dongxue,et al. Identification of micro fault opening in sweet-spot member of Lucaogou Formation in Jimusar Sag of Junggar Basin by maximum positive and negative curvature[J]. Oil Geophysical Prospecting,2022,57(1):184-193. [22] 刘茜.欧拉关于曲线曲率的研究[J].自然辩证法通讯,2020,42(12):56-61.LIU Xi. Euler’s research on curvature of curves[J]. Journal of Dialectics of Nature,2020,42(12):56-61. [23] 周钰邦,李勇,王孟修,等. GST算法在地震属性的研究[C]//中国石油学会石油物探专业委员会.CPS/SEG北京2018国际地球物理会议暨展览电子论文集.北京:《中国学术期刊(光盘版)》电子杂志社,2018:786-789.ZHOU Yubang,LI Yong,WANG Mengxiu,et al. Application of gradient structural tensor in seismic attribute[C]//Petroleum Geophysical Exploration Professional Committee of the Chinese Petroleum Society. CPS/SEG Beijing 2018 International Geophysical Conference&Exposition Electronic. Beijing:China Academic Journals(CD Edition)Electronic Publishing House,2018:786-789. [24] 陈雷.碳酸盐岩断裂带地震属性识别方法研究[D].青岛:中国石油大学(华东),2013.CHEN Lei. The study of carbonate fault zone identification based on seismic attributes[D]. Qingdao:China University of Petroleum(East China),2013. [25] 罗贝维,尹继全,张兴阳,等.阿曼前陆盆地构造-沉积特征及其对油气成藏的控制[J].岩石学报,2022,38(9):2608-2618.LUO Beiwei,YIN Jiquan,ZHANG Xingyang,et al. Structure and sedimentary features of Oman foreland basins and its influences on hydrocarbon accumulation[J]. Acta Petrologica Sinica,2022,38(9):2608-2618. [26] 朱伟林,白国平,李劲松,等.中东含油气盆地[M].北京:科学出版社,2014:298.ZHU Weilin,BAI Guoping,LI Jinsong,et al. Oil&gas bearing basins in the Middle East[M]. Beijing:Science Press,2014:298. |
[1] | 屈卫华, 田野, 董常春, 郭小波, 李立立, 林斯雅, 薛松, 杨世和. 松辽盆地德惠断陷白垩系烃源岩特征及其控藏作用[J]. 岩性油气藏, 2024, 36(6): 122-134. |
[2] | 肖博雅. 二连盆地阿南凹陷白垩系凝灰岩类储层特征及有利区分布[J]. 岩性油气藏, 2024, 36(6): 135-148. |
[3] | 王洪星, 韩诗文, 胡佳, 潘志浩. 松辽盆地德惠断陷白垩系火石岭组凝灰岩储层预测及成藏主控因素[J]. 岩性油气藏, 2024, 36(5): 35-45. |
[4] | 杨为华. 松辽盆地双城断陷白垩系营城组四段致密油成藏主控因素及模式[J]. 岩性油气藏, 2024, 36(4): 25-34. |
[5] | 周洪锋, 吴海红, 杨禹希, 向红英, 高吉宏, 贺昊文, 赵旭. 二连盆地巴音都兰凹陷B51井区白垩系阿四段扇三角洲前缘沉积特征[J]. 岩性油气藏, 2024, 36(4): 85-97. |
[6] | 何文渊, 陈可洋. 哈萨克斯坦南图尔盖盆地Doshan斜坡带岩性油气藏储层预测方法[J]. 岩性油气藏, 2024, 36(4): 1-11. |
[7] | 王同川, 陈浩如, 温龙彬, 钱玉贵, 李玉琢, 文华国. 川东五百梯地区石炭系岩溶古地貌识别及储集意义[J]. 岩性油气藏, 2024, 36(4): 109-121. |
[8] | 何文渊, 赵莹, 钟建华, 孙宁亮. 松辽盆地古龙凹陷白垩系青山口组页岩油储层中微米孔缝特征及油气意义[J]. 岩性油气藏, 2024, 36(3): 1-18. |
[9] | 龙盛芳, 侯云超, 杨超, 郭懿萱, 张杰, 曾亚丽, 高楠, 李尚洪. 鄂尔多斯盆地西南部庆城地区三叠系长7段—长3段层序地层特征及演化规律[J]. 岩性油气藏, 2024, 36(1): 145-156. |
[10] | 史卜庆, 丁梁波, 马宏霞, 孙辉, 张颖, 许小勇, 王红平, 范国章. 东非海域大型深水沉积体系及油气成藏特征[J]. 岩性油气藏, 2023, 35(6): 10-17. |
[11] | 马文杰, 王景春, 田作基, 马中振, 万学鹏, 林金逞, 许翔麟, 周玉冰. 南美洲Oriente盆地斜坡带W区块构造-岩性复合油藏成藏模式及有利区预测[J]. 岩性油气藏, 2023, 35(6): 29-36. |
[12] | 罗贝维, 尹继全, 胡广成, 陈华, 康敬程, 肖萌, 朱秋影, 段海岗. 阿联酋西部地区白垩系森诺曼阶高孔渗灰岩储层特征及控制因素[J]. 岩性油气藏, 2023, 35(6): 63-71. |
[13] | 刘计国, 周鸿璞, 秦雁群, 邹荃, 郑凤云, 李早红, 肖高杰. 非洲Muglad盆地Fula凹陷白垩系AG组岩性油气藏勘探潜力[J]. 岩性油气藏, 2023, 35(6): 82-91. |
[14] | 唐昱哲, 柴辉, 王红军, 张良杰, 陈鹏羽, 张文起, 蒋凌志, 潘兴明. 中亚阿姆河右岸东部地区侏罗系盐下碳酸盐岩储层特征及预测新方法[J]. 岩性油气藏, 2023, 35(6): 147-158. |
[15] | 齐育楷, 郭景祥, 罗亮, 骆福嵩, 周学文, 姚威, 张坦, 林会喜. 库车坳陷南部斜坡带隐蔽圈闭发育模式及勘探方向[J]. 岩性油气藏, 2023, 35(5): 108-119. |
|