岩性油气藏 ›› 2020, Vol. 32 ›› Issue (4): 89–97.doi: 10.12108/yxyqc.20200409

• 勘探技术 • 上一篇    下一篇

高石梯—磨溪地区灯影组多次波控制因素及预测方法

戴晓峰1, 谢占安1, 杜本强2, 张明1, 唐廷科2, 李军2, 牟川2   

  1. 1. 中国石油勘探开发研究院, 北京 100083;
    2. 中国石油西南油气田分公司 蜀南气矿, 四川 泸州 646000
  • 收稿日期:2019-07-22 修回日期:2019-08-30 出版日期:2020-08-01 发布日期:2020-06-16
  • 作者简介:戴晓峰(1973-),男,硕士,高级工程师,主要从事油藏地球物理和地震综合解释方面的研究工作。地址:(100083)北京市海淀区学院路20号。Email:dawnpeak0101@163.com。
  • 基金资助:
    国家重点研发计划课题“深地资源勘查开采理论与技术集成”(编号:2018YFC0603706)、中国石油天然气集团有限公司科技项目“物探重大技术现场试验与集成配套”(编号:2017D-3503)联合资助

Controlling factors and prediction methods of multiples of Dengying Formation in Gaoshiti-Moxi area,Sichuan Basin

DAI Xiaofeng1, XIE Zhan'an1, DU Benqiang2, ZHANG Ming1, TANG Tingke2, LI Jun2, MOU Chuan2   

  1. 1. PetroChina Research Institute of Petroleum Exploration & Development, Beijing 10083, China;
    2. Shu'nan Gas Mine, PetroChina Southwest Oil & Gas Field Company, Luzhou 646000, Sichuan, China
  • Received:2019-07-22 Revised:2019-08-30 Online:2020-08-01 Published:2020-06-16

摘要: 高石梯-磨溪地区灯影组存在多次波干扰,降低了储层预测的精度,需要对地震资料中多次波进行识别和预测,以减小多次波干扰对井位部署的影响。针对现有多次波识别和预测方法的不足,通过求取速度谱能量团对应的叠加速度展度的方法识别多次波。利用该方法预测的灯影组多次波平面发育程度,和已钻井符合一致,证明了该方法的有效性。综合分析认为,灯影组多次波整体具有南强北弱的规律,同时具有较强的平面非均质性。地震正演和地震资料综合分析表明,奥陶系地层有残留的区域多次波更发育,向斜区多次波干扰更强。根据多次波干扰的程度,将高石梯-磨溪三维地震资料划分为3种类别:Ⅰ类多次波干扰弱、地震能真实地反映地层波阻抗特征;Ⅱ类一次波和多次波能量相当,地震多解性较强;Ⅲ类多次波干扰强,地震反射不能反映地层的真实特征。基于多次波平面预测结果,地质人员能够判别地震解释成果的可靠性,合理规避风险,在气藏的开发过程中减小多次波干扰的影响,降低井位部署的风险。

关键词: 多次波, 地震速度谱, 速度展度, 灯影组, 奥陶系, 四川盆地

Abstract: There are multiples interferences of Dengying Formation in Gaoshiti-Moxi area,which reduces the accuracy of seismic reservoir prediction. It is necessary to identify and predict multiples in seismic data, so as to reduce the influence of multiples interference on current well location deployment. In view of the shortcomings of the existing methods of multiples recognition and prediction,the multiples were identified by velocity spread of the energy clusters on the seismic velocity spectrum. The multiples prediction of Dengying Formation was realized in Gaoshiti-Moxi area. The result was consistent with drilled well data,which proves the effectiveness of the method. According to the comprehensive analysis,the multiples of Dengying Formation are strong in the south and weak in the north on the whole,and have strong horizontal heterogeneity. Through seismic forward modeling and comprehensive analysis of seismic data,the areas with residual Ordovician strata develop more multiples,and multiples interference is stronger in the syncline area. According to the degree of multiples interference,the 3D seismic data in Gaoshiti-Moxi area can be divided into three types. Type Ⅰ multiples interference is weak,and seismic amplitude can truly reflect impedance characteristics of the strata. Type Ⅱ multiples' energy is similar to primary wave,and seismic data has more multiple solution. Type Ⅲ multiples interference is strong,and seismic data cannot represent the characteristics of strata. Based on the multiples prediction results,geologists can judge the reliability of seismic interpretation results,reasonably avoid risks,reduce the influence of multiples interference,and reduce the risk of well location deployment.

Key words: multiples, seismic velocity spectrum, velocity spread, Dengying Formation, Ordovician, Sichuan Basin

中图分类号: 

  • P631.4
[1] 徐春春, 沈平, 杨跃明, 等.乐山龙女寺古隆起震旦系-下寒武统龙王庙组天然气成藏条件与富集规律. 天然气工业, 2014, 34(3):1-7. XU C C, SHEN P, YANG Y M,et al. Accumulation conditions and enrichment patterns of natural gas in the Lower Cambrian Longwangmiao Fm reserviors of the Leshan Longnisi Paleohigh, Sichuan Basin. Natural Gas Industry, 2014, 34(3):1-7.
[2] 王良军.川北地区灯影组四段优质储层特征及控制因素.岩性油气藏, 2019, 31(2):35-45. WANG L J. Characteristics and controlling factors of high-quality reservoirs of the fourth member of Dengying Formation in northern Sichuan Basin. Lithologic Reservoirs, 2019, 31(2):35-45.
[3] 肖富森, 冉崎, 唐玉林, 等.乐山-龙女寺古隆起深层海相碳酸盐岩地震勘探关键技术及其应用. 天然气工业, 2014, 34(3):67-73. XIAO F S, RAN Q, TANG Y L, et al. Key technologies and their application to seismic exploration of the deep marine carbonate reservoirs in the Leshan-Longnüsi Paleo uplift, Sichuan Basin. Natural Gas Industry, 2014, 34(3):67-73.
[4] 肖富森, 陈康, 冉崎, 等.四川盆地高石梯地区震旦系灯影组气藏高产井地震模式新认识.天然气工业, 2018, 38(2):8-15. XIAO F S, CHEN K, RAN Q, et al. New understandings of the seismic modes of high productivity wells in the Sinian Dengying Fm gas reservoirs in the Gaoshiti area,Sichuan Basin. Natural Gas Industry, 2018, 38(2):8-15.
[5] 杨昊, 戴晓峰, 甘利灯, 等.反射率法正演模拟及其在多次波识别中的应用:以四川盆地川中地区为例.天津:中国石油学会2017年物探技术研讨会, 2017:310-313. YANG H, DAI X F, GAN L D, et al. Reflectivity forward modeling and application of multiples recognition:a case study of central Sichuan Basin. Tianjin:CPS 2017 Geophysical Technology Forum, 2017:310-313.
[6] 戴晓峰, 徐右平, 甘利灯, 等.川中深层-超深层多次波识别和压制技术:以高石梯-磨溪连片三维区为例.石油地球物理勘探, 2019, 54(1):54-64. DAI X F, XU Y P, GAN L D, et al. Deep & ultra-deep multiple suppression in central Sichuan:an example of Gaoshiti-Moxi. Oil Geophysical Prospecting, 2019, 54(1):54-64.
[7] 戴晓峰, 徐右平.川中中新元古代深层多次波压制技术研究. 工程地球物理学报, 2018, 15(2):189-194. DAI X F, XU Y P. The suppression of Meso-NeoProterozonic deep multiples in central Sichuan. Chinese Journal of Engineering Geophysics, 2018, 15(2):189-194.
[8] 戴晓峰, 刘卫东, 甘利灯, 等.Radon变换压制层间多次波技术在高石梯-磨溪地区的应用. 石油学报, 2018, 39(9):1028-1036. DAI X F, LIU W D, GAN L D, et al. The application of Radon transform to suppress interbed multiples in Gaoshiti-Moxi area. Acta Petrolei Sinica, 2018, 39(9):1028-1036.
[9] 杨雨, 黄先平, 张健, 等.四川盆地寒武系沉积前震旦系顶界岩溶地貌特征及其地质意义.天然气工业, 2014, 34(3):38-43. YANG Y, HUANG X P, ZHANG J, et al. Features and geologic significances of the top Sinian karst landform before the Cambrian deposition in the Sichuan Basin. Natural Gas Industry, 2014, 34(3):38-43.
[10] 毛治国, 崔景伟, 綦宗金, 等.风化壳储层分类、特征及油气勘探方向.岩性油气藏, 2018, 30(2):12-22. MAO Z G, CUI J W, QI Z J, et al. Classification, characteristics and petroleum exploration of weathering crust reservoir. Lithologic Reservoirs, 2018, 30(2):12-22.
[11] 杨威, 魏国齐, 赵蓉蓉, 等.四川盆地震旦系灯影组岩溶储层特征及展布.天然气工业, 2014, 34(3):55-60. YANG W, WEI G Q, ZHAO R R, et al. Characteristics and distritution of karst reserviors in the Sinian Dengying Fm,Sichuan Basin. Natural Gas Industry, 2014, 34(3):55-60.
[12] 谢冰, 白利, 赵艾琳, 等. Sonic Scanner声波扫描测井在碳酸盐岩储层裂缝有效性评价中的应用:以四川盆地震旦系为例.岩性油气藏, 2017, 29(4):117-123. XIE B, BAI L, ZHANG A L, et al. Application of Sonic Scanner logging to fracture effectiveness evaluation of carbonate reservoir:a case from Sinian in Sichuan Basin. Lithologic Reservoirs, 2017, 29(4):117-123.
[13] 单秀琴, 张静, 张宝民, 等.四川盆地震旦系灯影组白云岩岩溶储层特征及溶蚀作用证据.石油学报, 2016, 37(1):17-29. SHAN X Q, ZHANG J, ZHANG B M, et al. Dolomite karst reservoir characteristics and dissolution evidences of Sinian Dengying Formation,Sichuan Basin. Acta Petrolei Sinica, 2016, 37(1):17-29.
[14] 张宇飞, 苑昊.陆上多次波识别与压制.岩性油气藏, 2015, 27(6):104-110. ZHANG Y F, YUAN H. Recognition and attenuation of multiples in land seismic data. Lithologic Reservoirs, 2015, 27(6):104-110.
[15] 王汝珍. 多次波识别与衰减. 勘探地球物理进展, 2003, 26(5):423-432. WANG R Z. Recognition and suppression of multiple wave. Progress in Exploration Geophysics, 2003, 26(5):423-432.
[16] 胡荣杰.新疆TZ地区多次波干扰识别与压制技术.江汉石油职工大学学报, 2017, 30(3):13-15. HU R J. Research of multiple wave recognition and suppression technology in TZ area of Xinjiang. Journal of Jianghan Petroleum University of Staff and Workers, 2017, 30(3):13-15.
[17] 苑益军, 张锐锋.陆上地震数据多次波压制策略.现代地质, 2012, 26(6):1237-1243. YUAN Y J, ZHANG R F. Multiple suppression strategies on lnad seismic data. Geoscience, 2012, 26(6):1237-1243.
[18] 景晓军, 蔡安妮, 孙景鳌.一种基于二维最大类间方差的图像分割算法.通信学报, 2001, 22(4):71-76. JING X J, CAI A N, SUN J A. Image segmentation based on 2 D maximum between-cluster variance. Journal of China Institute of Communications, 2001, 22(4):71-76.
[19] 李了了, 邓善熙, 丁兴号, 等.基于大津法的图像分块二值化算法.微计算机信息, 2005, 21(8):76-77. LI L L, DENG S X, DING X H, et al. Binarization algorithm based on image partition derived from Da-Jing method. Microcomputer Information, 2005, 21(8):76-77.
[20] 李哲学, 陈树越.快速多阈值图像分割法.计算机应用, 2010, 30(5):1335-1343. LI Z X, CHEN S Y. Fast muti-thresholding approach. Journal of Computer Application, 2010, 30(5):1335-1343.
[21] VERSCHUUR D J. 地震多次波去除技术的过去、现在和未来. 陈浩林, 张保庆, 刘军, 等, 译.北京:石油工业出版社, 2010:6-8. VERSCHUUR D J. Seismic multiple removal techniques:Past, present and future. CHEN H L, ZHANG B Q, LIU J, et al,trans. Beijing:Petroleum Industry Press, 2010:6-8.
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