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Use of low-frequency signals to improve imaging quality under high-velocity basalt 被引量:1
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作者 She Deping guan luping +1 位作者 Xu Ying Li Pei 《Applied Geophysics》 SCIE CSCD 2006年第2期112-119,共8页
Wave equation wave field numerical modeling technology is applied to the observation that deep layer imaging is difficult below a screening layer of high-velocity basalt. Three simple high-velocity basalt models are d... Wave equation wave field numerical modeling technology is applied to the observation that deep layer imaging is difficult below a screening layer of high-velocity basalt. Three simple high-velocity basalt models are designed on the basis of basalt formation characteristics. The analysis of deep-layer reflection seismic signal energy shows that lowfrequency seismic signals are capable of both penetrating the thin high-velocity basalt layer and reducing the diffraction noise caused by the rough surfaces. The simulation experiment of a complete 2D basalt model confirms that the low-frequency signals can be used to boost the quality of deep-layer imaging under the high-velocity basalt layer and achieve good results in low-pass filter processing of actual data. 展开更多
关键词 high-velocity screening layer BASALT LOW-FREQUENCY penetrating force and numerical modeling
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