| [1] 叶素娟,李嵘,杨克明,等.川西坳陷叠覆型致密砂岩气区储层特征及定量预测评价[J].石油学报,2015,36(12):1484-1494.YE Sujuan,LI Rong,YANG Keming,et al.Characteristics and quantitative prediction of tight sand gas reservoirs in superimposed tight sandstone gas-bearing area,western Sichuan depression[J].Acta Petrolei Sinica,2015,36(12):1484-1494.
 [2] 葸克来,操应长,朱如凯,等.吉木萨尔凹陷二叠系芦草沟组致密油储层岩石类型及特征[J].石油学报,2015,36(12):1495-1507.
 XI Kelai,CAO Yingchang,ZHU Rukai,et al.Rock types and characteristics of tight oil reservoir in Permian Lucaogou Formation,Jimsar sag[J].Acta Petrolei Sinica, 2015,36(12):1495-1507.
 [3] 代全齐,罗群,张晨,等.基于核磁共振新参数的致密油砂岩储层孔隙结构特征——以鄂尔多斯盆地延长组7段为例[J].石油学报,2016,37(7):887-897.
 DAI Quanqi,LUO Qun,ZHANG Chen,et al.Pore structure characteristics of tight-oil sandstone reservoir based on a new parameter measured by NMR experiment:a case study of seventh Member in Yanchang Formation,Ordos Basin[J].Acta Petrolei Sinica,2016,37(7):887-897.
 [4] 刘春,张荣虎,张惠良,等.致密砂岩储层微孔隙成因类型及地质意义——以库车前陆冲断带超深层储层为例[J].石油学报,2017,38(2):150-159.
 LIU Chun,ZHANG Ronghu,ZHANG Huiliang,et al.Genetic types and geological significance of micro pores in tight sandstone reservoirs:a case study of the ultra-deep reservoir in the Kuqa foreland thrust belt,NW China[J].Acta Petrolei Sinica,2017,38(2):150-159.
 [5] 石玉江,潘保芝,蒋必辞,等.小波分析在致密砂岩气层识别中的应用[J].地球科学,2016,41(12):2127-2135.
 SHI Yujiang,PAN Baozhi,JIANG Bici,et al.Application of wavelet analysis in identification of tight sandstone gas reservoirs[J].Earth Science,2016,41(12):2127-2135.
 [6] 任大忠,孙卫,黄海,等.鄂尔多斯盆地姬塬油田长6致密砂岩储层成因机理[J].地球科学,2016,41(10):1735-1744.
 REN Dazhong,SUN Wei,HUANG Hai,et al.Formation mechanism of Chang 6 tight sandstone reservoir in Jiyuan oilfield,Ordos Basin[J].Earth Science,2016,41(10):1735-1744.
 [7] 刘金库,彭军,石岩,等.致密砂岩储层石英溶蚀成因及对孔隙发育的影响——以川中-川南过渡带须家河组为例[J].石油学报,2015,36(9):1090-1097.
 LIU Jinku,PENG Jun,SHI Yan,et al.The genesis of quartz dissolution in tight sand reservoirs and its impact on pore development:a case study of Xujiahe Formation in the transitional zone of Central-Southern Sichuan Basin[J].Acta Petrolei Sinica,2015,36(9):1090-1097.
 [8] 王改云,刘金萍,简晓玲,等.北黄海盆地下白垩统致密砂岩储层特征及成因[J].地球科学,2016,41(3):523-532.
 WANG Gaiyun,LIU Jinping,JIAN Xiaoling,et al.Characteristics and genetic mechanism of tight sandstone reservoirs of lower Crataceous in north yellow sea basin[J].Earth Science,2016,41(3):523-532.
 [9] 郭迎春,宋岩,庞雄奇,等.连续型致密砂岩气近源累计聚集的特征及成因机制[J].地球科学,2016,41(3):433-440.
 GUO Yingchun,SONG Yan,PANG Xiongqi,et al.Characteristics and genetic mechanism of near-source accumulated accumulation for continuous-type tight-sand gas[J].Earth Science,2016,41(3):433-440.
 [10] 黄欣芮,黄建平,李振春.基于双重孔隙理论的各向异性致密油砂岩地震岩石物理模型[J].石油学报,2015,36(10):1248-1259.
 HUANG Xinrui,HUANG Jianping,LI Zhenchun.Anisotropic seismic rock physics model of tight oil sandstone based on double-porosity theory[J].Acta Petrolei Sinica,2015,36(10):1248-1259.
 [11] 朱华银,徐轩,安来志,等.致密气藏孔隙水赋存状态与流动性实验[J].石油学报,2016,37(2):230-236.
 ZHU Huayin,XU Xuan,AN Laizhi,et al.An experimental on occurrence and mobility of pore water in tight gas reservoirs[J].Acta Petrolei Sinica,2016,37(2):230-236.
 [12] 邓少贵,牛云峰,赵岳,等.致密含气砂岩核磁共振-声波速度联合实验[J].石油学报,2016,37(6):768-776.
 DENG Shaogui,NIU Yunfeng,ZHAO Yue,et al.Nuclear magnetic resonance-acoustic velocity joint experiment of tight gas sandstone[J].Acta Petrolei Sinica,2016,37(6):768-776.
 [13] 宗兆云,印兴耀,吴国忱.基于叠前地震纵横波模量直接反演的流体检测方法[J].地球物理学报,2012,55(1):284-292.
 ZONG Zhaoyun,YIN Xingyao,WU Guochen.Fluid identification method based on compressional and shear modulus direct inversion[J].Chinese Journal of Geophysics,2012,55(1):284-292.
 [14] 许翠霞,马朋善,赖令彬,等.致密砂岩含气性敏感参数——以松辽盆地英台气田营城组为例[J].石油勘探与开发,2014,41(6):712-716.
 XU Cuixia,MA Pengshan,LAI Lingbin,et al.Sensitivity parameters of tight sand gas:a case study of Lower Cretaceous Yingcheng Formation of Yingtai gas field in Songliao Basin,NE China[J].Petroleum Exploration and Development,2014,41(6):712-716.
 [15] 晏信飞,曹宏,姚逢昌,等.致密砂岩储层贝叶斯岩性判别与孔隙流体检测[J].石油地球物理勘探,2012,47(6):945-950.
 YAN Xinfei,CAO Hong,YAO Fengchang,et al.Bayesian lithofacies discrimination and pore fluid detection in tight sandstone reservoirs[J].Oil Geophysical Prospecting,2012,47(6):945-950.
 [16] 刘兴业,陈小宏,李景叶,等.基于核贝叶斯判别法的储层物性参数预测[J].石油学报,2016,37(7):878-886.
 LIU Xingye,CHEN Xiaohong,LI Jingye,et al.Reservoir physical property prediction based on kernel-Bayes discriminant method[J].Acta Petrolei Sinica,2016,37(7):878-886.
 [17] 姜仁,曾庆才,黄家强,等.岩石物理分析在叠前储层预测中的应用[J].石油地球物理勘探,2014,49(2):322-328.
 JIANG Ren,ZENG Qingcai,HUANG Jiaqiang,et al.Application of rock physics analysis in pre-stack seismic reservoir prediction[J].Oil Geophysical Prospecting,2014,49(2):322-328.
 [18] 印兴耀,刘欣欣.储层地震岩石物理建模研究现状与进展[J].石油物探,2016,55(3):309-325.
 YIN Xingyao,LIU Xinxin.Research status and progress of the seismic rock-physics modeling methods[J].Geophysical Prospecting for Petroleum,2016,55(3):309-325.
 [19] 任科英.实验室岩心声学速度测试中的频散现象[J].石油地球物理勘探,2011,46(5):779-782.
 REN Keying.Velocity dispersion of ultrasonic core measurement in laboratory[J]. Oil Geophysical Prospecting,2011,46(5):779-782.
 [20] 印兴耀,宗兆云,吴国忱.岩石物理驱动下地震流体识别研究[J].中国科学:地球科学,2015,45(1):8-21.
 YIN Xingyao,ZONG Zhaoyun,WU Guochen.Research on seismic fluid identification driven by rock physics[J].Science China Earth Sciences,2015,58(2):159-171.
 [21] BIOT M A.Theory of propagation of elastic waves in a fluid-saturated porous solid.I.Low-frequency range[J].The Journal of the Acoustical Society of America,1956,28(2):168-178.
 [22] XU Shiyu,WHITE R E.A new velocity model for clay-sand mixtu res[J].Geophysical Prospecting,1995,43(1):91-118.
 [23] GASSMANN F.Elastic waves through a packing of spheres[J].Geophysics,1951,16(4):673-685.
 [24] KUSTER G T,TOKS? Z M N.Velocity and attenuation of seismic waves in two-phase media:Part I.Theoretical formulations[J].Geophysics,1974,39(5):587-606.
 [25] KUSTER G T,TOKS? Z M N.Velocity and attenuation of seismic waves in two-phase media:Part Ⅱ.Experimental results[J].Geophysics,1974,39(5):607-618.
 [26] KEYS R G,XU Shiyu.An approximation for the Xu-White velocity model[J].Geophysics,2002,67(5):1406-1414.
 [27] B ERRYMAN J G.Single-scattering approximations for coefficients in Biot's equations of poroelasticity[J].The Journal of the Acoustical Society of America, 1992,91(2):551-571.
 [28] WYLLIE M R J,GREGORY A R,GARDNER G H F.An experimental investigation of factors affecting elastic wave velocities in porous media[J].Geophysics,1958,23(3):459-493.
 [29] HILL R.The elastic behaviour of a crystalline aggregate[J].Proceedings of the Physical Society.Section A,1952,65(5):349-354.
 [30] BATZLE M,WANG Zhijing.Seismic properties of pore fluids[J].Geophysics,1992,57(11):1396-1408.
 [31] WOOD A W.A textbook of sound[M].New York:The MacMillan Co.,1955.
 [32] VOIGT W.Lehrbuch der Kristallphysik[M].Leipzig:Tuebner,1910.
 [33] BRIE A,PAMPURI F,MARSALA A F,et al.Shear sonic interpretation in gas-bearing sands[R].SPE 30595,1995.
 [34] 刘雅杰,李生杰,王永刚,等.横波预测技术在苏里格气田储层预测中的应用[J].石油地球物理勘探,2016,51(1):165-172.
 LIU Yajie,LI Shengjie,WANG Yonggang,et al.Reservoir prediction based on shear wave in Sulige Gas Field[J].Oil Geophysical Prospecting,2016,51(1):165-172.
 [35] 王大兴.致密砂岩气储层的岩石物理模型研究[J].地球物理学报,2016,59(12):4603-4622.
 WANG Daxing.Study on the rock physics model of gas reservoirs in tight sandstone[J].Chinese Journal of Geophysics,2016,59(12):4603-4622.
 [36] 姜仁,曾庆才,黄家强,等.基于岩石物理分析的致密砂岩流体检测方法研究[J].科学技术与工程,2015,15(1):163-167.
 JIANG Ren,ZENG Qingcai,HUANG Jiaqiang,et al.Tight gas saturation detection by most sensitive AVO attributes with rock physics analysis[J].Science Technology and Engineering,2015,15(1):163-167.
 [37] REUSS A.Calculation of the flow limits of mixed crystals on the basis of the plasticity of monocrystals[J].Zeitschrift für Angewandte Mathematik und Physik,1929,9:49-58.
 [38] AVSETH P,MUKERJI T,MAVKO G.Quantitative seismic interpretation:applying rock physics tools to reduce interpretation risk[M].London:Cambridge University Press,2010.
 [39] KNOTT C G.Reflection and refraction of elastic waves,with seismological applications[J].Philosophical Magazine,1899,48:64-97.
 [40] ZOEPPRITZ K.ERDBEBENWELLEN VⅢ B.Uber Reflexion and Durchgang seismischer Wellen durch Unstetigkeitsflaechen[J].Gottinger Nachr,1919,1:66-84.
 [41] AKI K,RICHARDS P G.Quantitative seismology:theory and methods[M].San Francisco:W.H.Freeman and Company,1980.
 [42] FATTI J L,SMITH G C,VAIL P J,et al.Detection of gas in sandstone reservoirs using AVO analysis:A 3-D seismic case history using the Geostack technique[J].Geophysics,1994,59(9):1362-1376.
 [43] CASTAGNA J P,BATZLE M L,EASTWOOD R L.Relationships between compressional-wave and shear-wave velocities in clastic silicate rocks[J].Geophysics,1985,50(4):571-581.
 [44] GARDNER G H F,GARDNER L W,GREGORY A R.Formation velocity and density-the diagnostic basics for stratigraphic traps[J].Geophysics,1974,39(6):770-780.
 [45] BULAND A,OMRE H.Bayesian linearized AVO inversion[J].Geophysics,2003,68(1):185-198.
 [46] 洪忠,张猛刚,朱筱敏.基于岩石物理的致密碎屑岩气藏岩性及流体概率预测[J].石油物探,2015,54(6):735-744.
 HONG Zhong,ZHANG Menggang,ZHU Xiaomin.Prediction on lithology and fluid probabilities of tight clastic gas reservoir based on rock physics[J].Geophysical Prospecting for Petroleum,2015,54(6):735-744.
 [47] 刘成明,王德利.基于贝叶斯理论的Shearlet域一次波与多次波分离[J].石油学报,2016,37(4):483-489.
 LIU Chengming,WANG Deli.Primary and multiple separation in Shearlet domain based on Bayesian theory[J].Acta Petrolei Sinica,2016,37(4):483-489.
 [48] LI Jingye.Gas reservoir identification by seismic AVO attributes on fluid substitution[J].Applied Geophysics, 2012,9(2):139-148.
 [49] RUSSELL B H,GRAY D,HAMPSON D P.Linearized AVO and poroelasticity[J].Geophysics,2011,76(3):C19-C29.
 [50] 张万龙,孙赞东,贺薪蔚,等.地震岩石物理模板应用中的两个关键问题[J].地球物理学进展,2015,30(5):2324-2329.
 ZHANG Wanlong,SUN Zandong,HE Xinwei,et al.Two key points of rock-physics template and its application[J].Progress in Geophysics,2015,30(5):2324-2329.
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