岩性油气藏 ›› 2017, Vol. 29 ›› Issue (6): 101–107.doi: 10.3969/j.issn.1673-8926.2017.06.013

• 技术方法 • 上一篇    下一篇

宽频勘探技术在柴北缘深层侏罗系勘探中的应用

王永生1, 胡杰1, 张静2, 王传武2, 朱波1, 吴永国3   

  1. 1. 中国石油青海油田分公司 勘探事业部, 甘肃 敦煌 736202;
    2. 中国石油青海油田分公司 勘探开发研究院, 甘肃 敦煌 736202;
    3. 中国石油东方地球物理公司 青海物探处, 甘肃 敦煌 736202
  • 收稿日期:2017-07-05 修回日期:2017-08-14 出版日期:2017-11-21 发布日期:2017-11-21
  • 第一作者:王永生(1984-),男,硕士,工程师,主要从事地震资料采集及物探技术管理工作。地址:(736202)甘肃省敦煌市七里镇中国石油青海油田分公司勘探部。Email:wyshqh@petrochina.com.cn。
  • 基金资助:
    国家自然科学基金项目"页岩气储层甜点预测地球物理理论与方法研究"(编号:41574108)资助

Wide-frequency prospecting technology and its application on deep-seated Jurassic exploration in northern margin of Qaidam Basin

WANG Yongsheng1, HU Jie1, ZHANG Jing2, WANG Chuanwu2, ZHU Bo1, WU Yongguo3   

  1. 1. Department of Geophysical Exploration, PetroChina Qinghai Oilfield Company, Dunhuang 736202, Gansu, China;
    2. Research Institute of Exploration and Development, PetroChina Qinghai Oilfield Company, Dunhuang 736202, Gansu, China;
    3. Qinghai Geophysical Exploration Department, BGP Inc., CNPC, Dunhuang 736202, Gansu, China
  • Received:2017-07-05 Revised:2017-08-14 Online:2017-11-21 Published:2017-11-21

摘要: 柴北缘地区的主力产层位于中深层侏罗系及基岩顶部,受复杂地震地质条件的影响,地震资料信噪比和分辨率均较低,难以落实有利圈闭。在该区实施了以宽频勘探技术为核心的采集处理解释一体化勘探技术,新采集的地震资料中深层成像质量得到明显改善,构造落实,基岩反射清晰,对断层、断块和断点的刻画更为清楚。同时,低频信息丰富,有效频带得到拓宽,分辨率明显提高。该技术采用低频可控震源激发增强地震波下传能量,拓宽原始资料频带宽度;高密度宽方位观测保证波场连续、对称、均匀采样,提高资料信噪比;高精度层析初至静校正提高复杂构造成像精度;宽频补偿处理拓宽剖面频带,提高资料分辨率;宽频反演储层预测精确刻画有利砂体展布。应用成果表明,宽频地震勘探技术可以有效解决该区中深层成像问题,为油田勘探开发提供有效的技术支撑。

关键词: 页岩气, 成藏条件, 陡山沱组, 新元古界, 湘西北地区

Abstract: The targets are located in the deep Jurassic and basement in northern margin of Qaidam Basin. Under the influence of complex seismic geological conditions,the signal-to-noise ratio and resolution of seismic data are low, so it is difficult to implement favorable structural trap. Based on wide-frequency prospecting, a set of integrated seismic exploration technology of acquisition,processing and interpretation were carried out. The results show that deep imaging quality of the new acquisition seismic data is improved,and the reflection of Jurassic structure, fault and bedrock is clear, while the low frequency information is rich, effective bandwidth is broadened, and resolution is significantly improved. The integrated technology uses the low frequency vibroseis seismic excitation to enhance wave signal energy and broaden the original data bandwidth. High density wide azimuth observation ensures continuous, symmetric and uniform sampling of the wave field, and improves the signal-to-noise ratio. The precision of the complex structure imaging is improved by high precision chromatography first-break refraction static correction. The wide frequency inversion reservoir prediction accurately depicts the favorable sand body. The application results show that broadband seismic exploration technology can effectively solve the deep imaging problems in this area, and it is an effective technical support for oilfield exploration and development.

Key words: shale gas, accumulation conditions, Doushantuo Formation, Neoproterozoic, NW Hunan province

中图分类号: 

  • P631.4
[1] 任收麦, 包书景, 张毅, 等.柴达木盆地北缘侏罗系页岩气地质条件.地质通报, 2016, 35(2/3):204-210. REN S M, BAO S J, ZHANG Y, et al. Geological conditions of the Jurassic shale gas on the northern margin of Qaidam Basin. Geological Bulletin of China, 2016, 35(2/3):204-210.
[2] 侯海海. 柴达木盆地北缘侏罗系煤储层物性特征与综合评价.北京:中国矿业大学(北京), 2015. HOU H H. Physical properties and comprehensive evaluation of coalbed methane reservoirs of Jurassic in the northern Qaidam Basin. Beijing:China University of Mining & Technology(Beijing), 2015.
[3] 陈吉, 张永梅, 史基安, 等.柴北缘冷湖-马仙地区古近系-新近系成岩作用特征.岩性油气藏, 2012, 24(2):21-25. CHEN J, ZHANG Y M, SHI J A, et al. Diagenesis of PaleogeneNeogene sandstone reservoirs in Lenghu-Maxian area, northern Qaidam Basin. Lithologic Reservoirs, 2012, 24(2):21-25.
[4] 孙国强, 杜忠明, 贾艳艳, 等.柴达木盆地北缘西段古近纪以来沉积模式研究.岩性油气藏, 2012, 24(4):13-18. SUN G Q, DU Z M, JIA Y Y, et al. Sedimentary model since Paleogene in northern margin of Qaidam Basin. Lithologic Reser-voirs, 2012, 24(4):13-18.
[5] 孟万斌, 李敏, 刘家铎, 等.柴达木盆地北缘潜西地区路乐河组末端扇沉积体系分析.岩性油气藏, 2010, 22(4):37-42. MENG W B, LI M, LIU J D, et al. Terminal fan sedimentary system of Lulehe Formation in Qianxi area in northern margin of Qaidam Basin. Lithologic Reservoirs, 2010, 22(4):37-42.
[6] 付小东, 饶丹, 秦建中, 等.柴达木盆地北缘地区中侏罗统大煤沟组页岩油形成地质条件.岩性油气藏, 2014, 26(6):20-27. FU X D, RAO D, QIN J Z, et al. Geological conditions for shale oil forming of Middle Jurassic Dameigou Formation in the northern margin of Qaidam Basin. Lithologic Reservoirs, 2014, 26(6):20-27.
[7] 陶知非, 赵永林, 马磊. 低频地震勘探与低频可控震源. 物探装备, 2011, 21(2):71-76. TAO Z F, ZHAO Y L, MA L. Low frequency seismic prospecting and Low frequency vibroseis. Equipment of Geophysical Prospecting, 2011, 21(2):71-76.
[8] 陶知非, 刘兴元, 王志杰.可控震源低频能量激发在低频地震数据采集应用中的误区.物探装备, 2012, 22(4):211-217. TAO Z F, LIU X Y, WANG Z J. Pitfalls of vibroseis application in low frequency seismic data acquisition. Equipment of Geophysical Prospecting, 2012, 22(4):211-217.
[9] 田玉昆, 李桂林, 刘晖, 等.哈拉湖地区低频可控震源天然气水合物地球物理响应特征研究. 地球物理学报, 2016, 59(11):4287-4296. TIAN Y K, LI G L, LIU H, et al. Geophysical response characteristics of gas hydrate in Harhu region based on low-frequency vibroseis data. Chinese Journal of Geophysics, 2016, 59(11):4287-4296.
[10] 陈敬国, 刘宏飞, 刘璐, 等. 可控震源在复杂障碍区地震勘探中的应用及效果. 非常规油气, 2016, 3(4):25-31. CHEN J G, LIU H F, LIU L, et al. Application and effect of vibrator in seismic exploration in complex obstacle area. Unconventional Oil & Gas, 2016, 3(4):25-31.
[11] 孔德政, 于敏杰, 刘新文, 等.两宽一高地震采集技术在复杂山前带的应用及效果分析.新疆石油天然, 2016, 12(1):33-38. KONG D Z, YU M J, LIU X W, et al. Application and effects of the "two-wide one-high" seismic acquisition technique in complex piedmont. Xinjiang Oil & Gas, 2016, 12(1):33-38.
[12] 吴永国, 尹吴海, 何永清, 等.三维观测系统属性均匀性的定量分析.石油地球物理勘探, 2012, 47(3):361-365. WU Y G, YIN W H, HE Y Q, et al. Uniformity quantitative analysis method of 3 D geometry attribute. Oil Geophysical Prospecting, 2012, 47(3):361-365.
[13] 牟永光, 裴正林.三维复杂介质地震数值模拟.北京:石油工业出版社, 2015:188-205. MU Y G, PEI Z L. Numerical simulation of 3 D seismic in complex media. Beijing:Petroleum Industry Press, 2015:188-205.
[14] 吴杰, 苏勤, 王建华, 等.层析静校正技术在柴北缘地区的应用.岩性油气藏, 2008, 20(3):79-82. WU J, SU Q, WANG J H, et al. Application of tomographic static correction in northern margin of Qaidam Basin. Lithologic Reser-voirs, 2008, 20(3):79-82.
[15] 公亭, 王兆磊, 顾小弟, 等.宽频地震资料处理配套技术.石油地球物理勘探, 2016, 51(3):457-466. GONG T, WANG Z L, GU X D, et al. Broadband seismic data matching processing. Oil Geophysical Prospecting, 2016, 51(3):457-466.
[16] BAETEN G, MAAG J W, PLESSIX R E, et al. The use of low frequencies in a full-waveform inversion and impedance inversion land seismic case study. Geophysical Prospecting, 2013, 61(4):701-711.
[1] 冉逸轩, 王健, 张熠. 松辽盆地北部中央古隆起基岩气藏形成条件与有利勘探区[J]. 岩性油气藏, 2024, 36(6): 66-76.
[2] 关蕴文, 苏思羽, 蒲仁海, 王启超, 闫肃杰, 张仲培, 陈硕, 梁东歌. 鄂尔多斯盆地南部旬宜地区古生界天然气成藏条件及主控因素[J]. 岩性油气藏, 2024, 36(6): 77-88.
[3] 闫建平, 来思俣, 郭伟, 石学文, 廖茂杰, 唐洪明, 胡钦红, 黄毅. 页岩气井地质工程套管变形类型及影响因素研究进展[J]. 岩性油气藏, 2024, 36(5): 1-14.
[4] 杨学锋, 赵圣贤, 刘勇, 刘绍军, 夏自强, 徐飞, 范存辉, 李雨桐. 四川盆地宁西地区奥陶系五峰组—志留系龙马溪组页岩气富集主控因素[J]. 岩性油气藏, 2024, 36(5): 99-110.
[5] 包汉勇, 赵帅, 张莉, 刘皓天. 川东红星地区中上二叠统页岩气勘探成果及方向展望[J]. 岩性油气藏, 2024, 36(4): 12-24.
[6] 申有义, 王凯峰, 唐书恒, 张松航, 郗兆栋, 杨晓东. 沁水盆地榆社—武乡区块二叠系煤系页岩储层地质建模及“甜点”预测[J]. 岩性油气藏, 2024, 36(4): 98-108.
[7] 段逸飞, 赵卫卫, 杨天祥, 李富康, 李慧, 王嘉楠, 刘钰晨. 鄂尔多斯盆地延安地区二叠系山西组页岩气源储特征及聚集规律[J]. 岩性油气藏, 2024, 36(3): 72-83.
[8] 程静, 闫建平, 宋东江, 廖茂杰, 郭伟, 丁明海, 罗光东, 刘延梅. 川南长宁地区奥陶系五峰组—志留系龙马溪组页岩气储层低电阻率响应特征及主控因素[J]. 岩性油气藏, 2024, 36(3): 31-39.
[9] 杨博伟, 石万忠, 张晓明, 徐笑丰, 刘俞佐, 白卢恒, 杨洋, 陈相霖. 黔南地区下石炭统打屋坝组页岩气储层孔隙结构特征及含气性评价[J]. 岩性油气藏, 2024, 36(1): 45-58.
[10] 王小娟, 陈双玲, 谢继容, 马华灵, 朱德宇, 庞小婷, 杨田, 吕雪莹. 川西南地区侏罗系沙溪庙组致密砂岩成藏特征及主控因素[J]. 岩性油气藏, 2024, 36(1): 78-87.
[11] 魏全超, 李小佳, 李峰, 郝景宇, 邓双林, 吴娟, 邓宾, 王道军. 四川盆地米仓山前缘旺苍地区下寒武统筇竹寺组裂缝脉体发育特征及意义[J]. 岩性油气藏, 2023, 35(5): 62-70.
[12] 柳忠泉, 赵乐强, 曾治平, 田继军, 李正强, 罗锦昌, 胡美玲. 准噶尔盆地阜康断裂带二叠系芦草沟组页岩油成藏条件[J]. 岩性油气藏, 2023, 35(3): 126-137.
[13] 杨跃明, 张少敏, 金涛, 明盈, 郭蕊莹, 王兴志, 韩璐媛. 川南地区二叠系龙潭组页岩储层特征及勘探潜力[J]. 岩性油气藏, 2023, 35(1): 1-11.
[14] 闫建平, 罗静超, 石学文, 钟光海, 郑马嘉, 黄毅, 唐洪明, 胡钦红. 川南泸州地区奥陶系五峰组—志留系龙马溪组页岩裂缝发育模式及意义[J]. 岩性油气藏, 2022, 34(6): 60-71.
[15] 郭美洁, 时保宏, 董雄英, 李昊东, 何川. 黄骅坳陷埕海斜坡古近系油气成藏条件及主控因素[J]. 岩性油气藏, 2022, 34(3): 82-92.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] . 2022年 34卷 2 期 封面[J]. 岩性油气藏, 2022, 34(2): 0 .
[2] 李在光, 李琳. 以井数据为基础的AutoCAD 自动编绘图方法[J]. 岩性油气藏, 2007, 19(2): 84 -89 .
[3] 程玉红, 郭彦如, 郑希民, 房乃珍, 马玉虎. 井震多因素综合确定的解释方法与应用效果[J]. 岩性油气藏, 2007, 19(2): 97 -101 .
[4] 刘俊田,靳振家,李在光,覃新平,郭 林,王 波,刘玉香. 小草湖地区岩性油气藏主控因素分析及油气勘探方向[J]. 岩性油气藏, 2007, 19(3): 44 -47 .
[5] 商昌亮,付守献. 黄土塬山地三维地震勘探应用实例[J]. 岩性油气藏, 2007, 19(3): 106 -110 .
[6] 王昌勇, 郑荣才, 王建国, 曹少芳, 肖明国. 准噶尔盆地西北缘八区下侏罗统八道湾组沉积特征及演化[J]. 岩性油气藏, 2008, 20(2): 37 -42 .
[7] 王克, 刘显阳, 赵卫卫, 宋江海, 时振峰, 向惠. 济阳坳陷阳信洼陷古近纪震积岩特征及其地质意义[J]. 岩性油气藏, 2008, 20(2): 54 -59 .
[8] 孙洪斌, 张凤莲. 辽河坳陷古近系构造-沉积演化特征[J]. 岩性油气藏, 2008, 20(2): 60 -65 .
[9] 李传亮. 地层抬升会导致异常高压吗?[J]. 岩性油气藏, 2008, 20(2): 124 -126 .
[10] 魏钦廉,郑荣才,肖玲,马国富,窦世杰,田宝忠. 阿尔及利亚438b 区块三叠系Serie Inferiere 段储层平面非均质性研究[J]. 岩性油气藏, 2009, 21(2): 24 -28 .