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非均匀节点网格TI介质反射波射线追踪研究 被引量:4
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作者 黄光南 邓居智 +3 位作者 李红星 李泽林 张华 王安东 《石油物探》 EI CSCD 北大核心 2016年第1期25-32,共8页
地下介质不仅具有各向异性性质,还存在一定程度的复杂地质构造。运用均匀节点网格射线追踪方法计算旅行时要求网格单元的划分非常小以达到较高的旅行时精度,这种做法会产生大量的网格单元从而降低计算效率。基于均匀节点网格算法,研究... 地下介质不仅具有各向异性性质,还存在一定程度的复杂地质构造。运用均匀节点网格射线追踪方法计算旅行时要求网格单元的划分非常小以达到较高的旅行时精度,这种做法会产生大量的网格单元从而降低计算效率。基于均匀节点网格算法,研究了非均匀节点网格TI介质反射波射线追踪方法,采用较大的网格单元,通过在网格单元的每条边增加次一级节点来提高旅行时计算的精度与效率。首先讨论了qP,qSV和qSH波的群速度计算方法,然后给出了非均匀节点网格TI介质反射波射线追踪算法,最后分别求取了3种不同对称轴倾角的TI介质起伏地层模型qP,qSV和qSH反射波的射线路径和旅行时。结果表明:1非均匀节点网格射线追踪算法能够适用于复杂TI介质模型;2相同模型中不同波模式具有不同的反射路径和旅行时;3相同波模式在不同对称轴倾角模型中也具有不同的反射路径和旅行时。 展开更多
关键词 起伏地层模型 非均匀节点网格 各向异性TI介质 射线追踪算法
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Reverse time migration imaging of tunnels via the finite element method using an unstructured mesh
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作者 Wang Jing Liu Jiang-Ping +2 位作者 Cheng Fei Yang Huai-Jie Huang Yi-Fan 《Applied Geophysics》 SCIE CSCD 2020年第2期267-276,316,共11页
Wavefield extrapolation is critical in reverse time migration(RTM).The finite diff erence method is primarily used to achieve wavefi eld extrapolation in case of the RTM imaging of tunnels.However,complex tunnel model... Wavefield extrapolation is critical in reverse time migration(RTM).The finite diff erence method is primarily used to achieve wavefi eld extrapolation in case of the RTM imaging of tunnels.However,complex tunnel models,including those for karsts and fault fracture zones,are constructed using regular grids with straight curves,which can cause numerical dispersion and reduce the imaging accuracy.In this study,wavefi eld extrapolation was conducted for tunnel RTM using the finite element method,wherein an unstructured mesh was considered to be the body-fi tted partition in a complex model.Further,a Poynting vector calculation equation suitable for the unstructured mesh considered in the fi nite element method was established to suppress the interference owing to low-frequency noise.The tunnel space was considered during wavefi eld extrapolation to suppress the mirror artifacts based on the fl exibility of mesh generation.Finally,the infl uence of the survey layouts(one and two sidewalls)on the tunnel imaging results was investigated.The RTM results obtained for a simple tunnel model with an inclined interface demonstrate that the method based on unstructured meshes can effectively suppress the low-frequency noise and mirror artifacts,obtaining clear imaging results.Furthermore,the two-sidewall tunnel survey layout can be used to accurately obtain the real position of the inclined interface ahead of the tunnel face.The complex tunnel numerical modeling and actual data migration results denote the eff ectiveness of the fi nite element method in which an unstructured mesh is used. 展开更多
关键词 Tunnel advanced prediction fi nite element method unstructured mesh Poynting vector mirror artifacts
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