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Steeply dipping structural target-oriented viscoacoustic least-squares reverse time migration and its application
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作者 Chen Kang Han Song +3 位作者 Ran Qi Wen Long Zhang Guang-Zhi Qu Ying-Ming 《Applied Geophysics》 SCIE CSCD 2022年第4期528-536,604,共10页
Steeply dipping structural imaging is a significant challenge because surface geophones cannot obtain seismic primary reflection wave information from steeply dipping structures.Prismatic waves with a significant amou... Steeply dipping structural imaging is a significant challenge because surface geophones cannot obtain seismic primary reflection wave information from steeply dipping structures.Prismatic waves with a significant amount of steeply dipping information can be used to improve the imaging eff ect on steeply dipping structures.Subsurface attenuation leads to amplitude loss and phase distortion of seismic waves,and ignoring this attenuation during imaging can cause blurring of migration amplitudes.In this study,we proposed a steeply dipping structural target-oriented viscoacoustic least-squares reverse time migration(LSRTM)method with prismatic and primary waves as an objective function based on the viscous wave equation,while deriving Q-compensated wavefield propagation and joint operators of prismatic and primary waves and the Q-compensated demigration operator.Numerical examples on synthetic and field data verified the advantages of the proposed viscoacoustic LSRTM method of joint primary and prismatic waves over conventional viscoacoustic LSRTM and non-compensated LSRTM when using attenuating observed data. 展开更多
关键词 Q-compensation prismatic wave least-squares reverse time migration steeply dipping structure
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复杂构造变形与控藏物理模拟技术在西部含油气盆地的应用
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作者 王宏斌 +12 位作者 王彦君 马德龙 吴武军 景紫岩 郝彬 崔键 姚清洲 房启飞 陈军 李国斌 刘文强 田雷 代冬冬 《中国科技成果》 2024年第5期61-62,共2页
随着含油气盆地勘探程度的不断提高和勘探难度的加大,油气勘探工作面临严峻挑战.油气勘探呈现出目标日益复杂、资源品位变差、目的层深度加大等趋势,复杂构造、复杂岩性、深层-超深层及非常规逐渐成为主要勘探对象.这些复杂对象蕴含着... 随着含油气盆地勘探程度的不断提高和勘探难度的加大,油气勘探工作面临严峻挑战.油气勘探呈现出目标日益复杂、资源品位变差、目的层深度加大等趋势,复杂构造、复杂岩性、深层-超深层及非常规逐渐成为主要勘探对象.这些复杂对象蕴含着巨大的资源量,增储潜力巨大.由于复杂构造变形带的"双复杂"特性(复杂地表条件及复杂地下构造变形)往往造成复杂构造地震难以准确成像,其影响了对复杂构造变形带演化过程及其成圈、成藏控制作用的认识,制约了勘探方向的选择,甚至造成钻探失利. 展开更多
关键词 含油气盆地 构造变形 勘探对象 复杂构造 复杂岩性 构造地震 成藏控制 资源量
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