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基于全方位地震数据的方位AVO(AVAZ)反演

时间:2021-02-07 21:09:35编辑:刘牛来源:曲谱自学网

[1]   CHEN Ming-Chun, XU Sheng, WEI Chun-Guang . 2015. Technique of fractured carbonate reservoir prediction and its application in oversea gas field exploration[J]. Progress in Geophysics (in Chinese), 30(4):1660-1665, doi: 10.6038/pg20150419.  
[2]   JIA Yue-Wei, WEI Shui-Jian, LV Lin . 2014. Application of seismic P-wave azimuthal anisotropy in volcanic fracture quantitative prediction[J]. Geophysical Prospecting for Petroleum (in Chinese), 53(4):477-483.  
[3]   JIANG Chuan-Jin, JU Lin-Bo, ZHANG Guang-Ying , et al. 2011. The method and effect analysis of volcanic fracture prediction with prestack seismic data——an example from the volcanic rocks of Yingcheng formation in Xujiaweizi fault depression, north of Songliao basin[J]. Chinese Journal of Geophysics (in Chinese), 54(2):515-523, doi: 10.3969/j.issn.0001-5733.2011.02.031.  
[4]   KUANG Li-Xiong, GUO Jian-Hua, HUANG Tai-Zhu . 2008. Forming mechanism of hydrocarbon reservoirs of Halahatang formation in Yuqi Block in Akekule Arch, Tarim Basin[J]. Journal of Jilin University (Earth Science Edition) (in Chinese), 38(2):249-254.  
[5]   LIU Jun-Ying, YONG Xue-Shan, YANG Wu-Yang , et al. 2012. Prestack fracture reservoir bed estimation of Ordovician weather layer of Dagang—ChengHai area based on azimuthal prestack seismic amplitude[J]. Progress in Geophysics (in Chinese), 27(4):1588-1597, doi: 10.6038/j.issn.1004-2903.2012.04.036.  
[6]   LIU Xi-Wu, LIU Zhi-Yuan, NING Jun-Rui , et al. 2015. Full azimuth subsurface local angle domain imaging based anisotropy characterization for shale gas reservoir[J]. Progress in Geophysics (in Chinese), 30(2):853-857, doi: 10.6038/pg20150250.  
[7]   Narhari S R, Al-Qadeeri B, Kidambi V, et al. 2014. A case study of prestack orthotropic AVAz inversion for fracture characterization of a tight Deep Carbonate reservoir of Kuwait [C]//SEG Technical Program Expanded Abstracts 2014. Denver, Colorado, USA: Denver, Colorado, USA, 325-329.  
[8]   SUN Wei, LI Yu-Feng, FU Jian-Wei , et al. 2014. Review of fracture identification with well logs and seismic data[J]. Progress in Geophysics (in Chinese), 29(3):1231-1242, doi: 10.6038/pg20140332.
doi: 10.6038/pg20140332
 
[9]   WANG Kang-Ning, LI Hui-Li, ZHANG Ji-Biao . 2017. Study of pre-stack seismic fracture prediction method and its application in Ordovician carbonate formation in northern slope of the Tazhong uplift[J]. Progress in Geophysics (in Chinese), 32(5):2078-2084, doi: 10.6038/pg20170530.  
[10]   Williams M, Jenner E . 2002. Interpreting seismic data in the presence of azimuthal anisotropy; or azimuthal anisotropy in the presence of the seismic interpretation[J]. The Leading Edge, 21(8):771-774.  
[11]   陈明春, 徐晟, 魏春光 . 2015. 裂缝型碳酸盐岩储层预测技术及海外气田勘探实践[J]. 地球物理学进展, 30(4):1660-1665, doi: 10.6038/pg20150419.  
[12]   贾跃玮, 魏水建, 吕林 . 2014. 应用地震纵波方位各向异性定量预测火山岩裂缝[J]. 石油物探, 53(4):477-483.  
[13]   姜传金, 鞠林波, 张广颖 , 等. 2011. 利用地震叠前数据预测火山岩裂缝的方法和效果分析——以松辽盆地北部徐家围子断陷营城组火山岩为例[J]. 地球物理学报, 54(2):515-523, doi: 10.3969/j.issn.0001-5733.2011.02.031.
doi: 10.3969/j.issn.0001-5733.2011.02.031
 
[14]   旷理雄, 郭建华, 黄太柱 . 2008. 塔里木盆地阿克库勒凸起于奇地区哈拉哈塘组油气成藏机制[J]. 吉林大学学报(地球科学版), 38(2):249-254.
doi: 10.3969/j.issn.1671-5888.2008.02.010
 
[15]   刘军迎, 雍学善, 杨午阳 , 等. 2012. 基于叠前方位振幅的大港—埕海地区奥陶系风化壳裂缝储层的叠前预测[J]. 地球物理学进展, 27(4):1588-1597, doi: 10.6038/j.issn.1004-2903.2012.04.036.  
[16]   刘喜武, 刘志远, 宁俊瑞 , 等. 2015. 基于全方位地下局部角度域成像的页岩气储层各向异性预测[J]. 地球物理学进展, 30(2):853-857, doi: 10.6038/pg20150250.  
[17]   孙炜, 李玉凤, 付建伟 , 等. 2014. 测井及地震裂缝识别研究进展[J]. 地球物理学进展, 29(3):1231-1242, doi: 10.6038/pg20140332.
doi: 10.6038/pg20140332
 
[18]   王康宁, 李慧莉, 张继标 . 2017. 塔中北坡地区奥陶系碳酸盐岩叠前地震裂缝预测方法应用研究[J]. 地球物理学进展, 32(5):2078-2084, doi: 10.6038/pg20170530.  

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