Lithologic Reservoirs ›› 2017, Vol. 29 ›› Issue (3): 103-109.doi: 10.3969/j.issn.1673-8926.2017.03.012
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ZHAO Wanjin, ZHOU Chunlei
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[1] 王时林, 秦启荣, 苏培东, 等.川北阆中-南部地区大安寨段裂缝预测.岩性油气藏, 2011, 23(5):69-73. WANG S L, QIN Q R, SU P D, et al. Fracture prediction of Daanzhai member in Langzhong-Nanbu area, northern Sichuan. Lithologic Reservoirs, 2011, 23(5):69-73. [2] 邵晓州, 秦启荣, 范晓丽, 等.川东北黄龙场构造飞仙关组四段底部裂缝预测研究.岩性油气藏, 2011, 23(5):96-100. SHAO X Z, QIN Q R, FAN X L, et al. Fracture prediction of the bottom of T1f4 in Huanglongchang structure, northeastern Sichuan Basin. Lithologic Reservoirs, 2011, 23(5):96-100. [3] 周文, 尹太举, 张亚春, 等.蚂蚁追踪技术在裂缝预测中的应用——以青西油田下沟组为例. 岩性油气藏, 2015, 27(6):111-118. ZHOU W, YIN T J, ZHANG Y C, et al. Application of ant tracking technology to fracture prediction:a case study from Xiagou Formation in Qingxi Oilfield. Lithologic Reservoirs, 2015, 27(6):111-118. [4] 冯明友, 张帆, 王兴志, 等.利用IPA技术精细识别裂缝——以柴达木盆地南翼山工区为例.地球物理学进展, 2010, 25(6):2054-2060. FENG M Y, ZHANG F, WANG X Z, et al. Delineation of fractures by 3D seismic data IPA technique:a case study in the Nanyishan area, Qaidam Basin. Progress in Geophysics, 2010, 25(6):2054-2060. [5] 苟量, 彭真明.小波多尺度边缘检测及其在裂缝预测中的应用.石油地球物理勘探, 2005, 40(3):309-313. GOU L, PENG Z M. Multi-scale edge detection of wavelet and application in fracture prediction. Oil Geophysical Prospecting, 2005, 40(3):309-313. [6] BONDAR I. Seismic horizon detection using image processing algorithms. Geophysical Prospecting, 1992, 40(7):785-800. [7] HESTHAMMER J. Improving seismic data for detailed structural interpretation. The Leading Edge, 1999, 18(2):226-247. [8] 陈凤, 李金宗, 李冬冬, 等.提高地震图像信噪比的非线性各向异性扩散算法模型.石油勘探与开发, 2004, 31(2):77-80. CHEN F, LI J Z, LI D D, et al. A model of nonlinear anisotropic diffusion for increasing signal to noise ratio of seismic image. Petroleum Exploration and Development, 2004, 31(2):77-80. [9] 孙夕平, 杜世通, 汤磊.相干增强各向异性扩散滤波技术.石油地球物理勘探, 2004, 39(6):651-655. SUN X P, DU S T, TANG L. Coherent-enhancing anisotropic diffusion filtering technique. Oil Geophysical Prospecting, 2004, 39(6):651-655. [10] 杨宁, 陈婷.基于多尺度数学形态学地震图象增强方法在裂缝解释中的应用.信息技术与信息化, 2016, 195(4):48-51. YANG N, CHEN T. Seismic fracture detection based on multiscale morphological seismic image enhancement method. Information Technology and Informatization, 2016, 195(4):48-51. [11] 石双虎.基于新等效介质模型HTI介质中断裂大小、各向异性及频率之间的依赖关系.长春:吉林大学, 2007:83-100. SHI S H. Dependency relationship of fracture size, anisotropy and frequency in HTI media based on developing equivalent media model. Changchun:Jinlin University, 2007:83-100. [12] CHAPMAN M. Frequency-dependent anisotropy due to mesoscale fractures in the presence of equant porosity. Geophysical Prospecting, 2003, 51(5):369-379. [13] CANDÈS E J, DONOHO D L. Curvelets-a surprisingly effective nonadaptive representation for objects with edges. Nashville:Vaderbilt University Press, 1999:1-10. [14] 张广智, 郑静静, 印兴耀.基于Curvelet变换的多尺度性识别裂缝发育带.石油地球物理勘探, 2011, 46(5):757-762. ZHANG G Z, ZHENG J J, YIN X Y. Identification technology of fracture zone and its strike based on the Curvelet transform. Oil Geophysical Prospecting, 2011, 46(5):757-762. [15] 敬忠良, 肖刚, 李振华.图像融合——理论与应用.北京:高等教育出版社, 2007:5-6. JING Z L, XIAO G, LI Z H. Image fusion-theory and applications. Beijing:Higher Education Press, 2007:5-6. [16] DO M N, VETTERLI M. Contourlet:a directional multiresolution image repersentation. Proc of IEEE International Conference on Image Processing, Rochester, NY, 2002:357-360. [17] 郑静. 基于Contourlet变换的图像融合算法研究.青岛:山东科技大学, 2011:12-21. ZHENG J. Study of image fusion based on Contourlet transform. Qingdao:Shandong University of Science and Technology, 2011:12-21. [18] DO M N, VETTERLI M. The contourlet transform:an efficient directional multiresolution image representation. IEEE Transactions on Image Processing, 2005, 14(12):2091-2105. [19] 易文娟, 郁梅, 蒋刚毅.Contourlet:一种有效的方向多尺度变换分析方法.计算机应用研究, 2006, 26(9):18-22. YI W J, YU M, JIANG G Y. Contourlet:efficient directional and multiresolution analytic tool. Application Research of Computers, 2006, 26(9):18-22. |
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