Lithologic Reservoirs ›› 2011, Vol. 23 ›› Issue (5): 87-95.doi: 10.3969/j.issn.1673-8926.2011.05.018
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CHEN Keyang
[1] 陆基孟.地震勘探原理(上、下册)[M].北京:石油大学出版社,2004:40-300. [2] 凌云.地震数据采集·处理·解释一体化实践与探索[M].北京:石油工业出版社,2007:23-140. [3] 渥·伊尔马滋.地震资料分析———地震资料处理、反演和解释(上、下册)[M].刘怀山,王克斌,童思友,等译.北京:石油工业出版社,2006:10-540. [4] 陈可洋.地震波数值模拟中差分近似的各向异性分析[J].石油物探,2010,49(1):19-22. [5] 陈可洋.标量声波波动方程高阶交错网格有限差分法[J].中国海上油气,2009,21(4):232-236. [6] 陈可洋.起伏地表地震波正演数值模拟[J].高原地震,2010,22(2):39-44. [7] 陈可洋.基于交错网格的弹性波波场分离数值模拟方法[J].中国石油勘探,2010,14(3):33-37. [8] 陈可洋.边界吸收中镶边法的评价[J].中国科学院研究生院学报,2010,27(2):170-175. [9] 陈可洋.完全匹配层吸收边界条件研究[J].石油物探,2010,49(5):472-477. [10] 杨微,陈可洋.加权吸收边界条件的优化设计[J].石油物探,2009,48(3):244-246. [11] 陈可洋,杨微.优化的三维地震波双重吸收边界条件[J].勘探地球物理进展,2009,32(3):179-181. [12] 陈可洋.基于高阶有限差分的波动方程叠前逆时偏移方法[J].石油物探,2009,48(5):475-478. [13] 陈可洋,杨微,吴清岭,等.几种地震波叠后深度偏移方法的比较[J].勘探地球物理进展,2009,32(4):257-260. [14] 陈可洋.地震波旅行时计算方法及其模型试验分析[J].石油物探,2010,49(2):153-157. [15] 陈可洋.地震波逆时偏移方法研究综述[J].勘探地球物理进展,2010,33(3):153-159. [16] 陈可洋.声波和弹性波叠后逆时深度偏移[J].天然气勘探与开发,2010,33(3):20-21. [17] 杨仁虎,常旭,刘伊克.叠前逆时偏移影响因素分析[J].地球物理学报,2010,53(8):1 902-1 913. [18] 孙文博,孙赞东.基于伪谱法的VSP 逆时偏移及其应用研究[J].地球物理学报,2010,53(9):2 196-2 203. [19] 董春晖,王尚旭.变时间步长有限差分法逆时偏移[J].地球物理学进展,2010,25(4):1 298-1 305. [20] 徐义.格子法在起伏地表叠前逆时深度偏移中的应用[J].地球物理学进展,2008,23(3):839-845. [21] 李信富,张美根.显式分形插值在有限元叠前逆时偏移成像中的应用[J].地球物理学进展,2008,23(5):1 406-1 411. [22] 丁仁伟,李振春,孙小东,等.叠前逆时深度偏移中的激发时间成像条件[J].地球物理学进展,2008,23(6):1 859-1 865. [23] 常旭,刘伊克,桂志先.反射地震零偏移距逆时偏移方法用于隧道超前预报[J].地球物理学报,2006,49(5):1 482-1 488. [24] 王童奎,付兴深,朱德献,等.谱元法叠前逆时偏移研究[J].地球物理学进展,2008,23(3):681-685. [25] 杜启振,秦童.横向各向同性介质弹性波多分量叠前逆时偏移[J].地球物理学报,2009,52(3):801-807. [26] 刘红伟,李博,刘洪,等.地震叠前逆时偏移高阶有限差分算法及GPU 实现[J].地球物理学报,2010,53(7):1 725-1 733. [27] 刘红伟,刘洪,邹振,等.地震叠前逆时偏移中的去噪与存储[J].地球物理学报,2010,53(9):2 171-2 180. [28] 陈可洋.宽频双程走时计算方法及其波场照明分析[J].勘探地球物理进展,2010,33(4):270-274. [29] 陈可洋.各向异性弹性波动方程多分量联合叠后逆时偏移[J].内陆地震,2009,23(4):455-460. [30] 陈可洋.时限时移相关法叠前逆时成像条件及其应用[J].石油物探,2011,50(1):22-26. [31] 于常青,杨午阳,杨文采.关于油气地震勘探的基础研究问题[J].岩性油气藏,2007,19(2):117-120. [32] 肖盈,贺振华,黄德济.碳酸盐岩礁滩相储层地震波场数值模拟[J].岩性油气藏,2009,21(1):99-101. |
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