会议论文详细信息
41st HAGI Annual Convention and Exhibition 2016
Gabor Deconvolution as Preliminary Method to Reduce Pitfall in Deeper Target Seismic Data
Oktariena, M.^1 ; Triyoso, W.^2
Geophysical Engineering Department, Institut Teknologi Bandung, Indonesia^1
Global Geophysics Group, Geophysical Engineering Department, Institut Teknologi Bandung, Indonesia^2
关键词: Anelastic attenuation;    Attenuation effect;    Attenuation function;    Convolution windows;    Direct hydrocarbon indicators;    Interpretation methods;    Non stationary characteristics;    Partition of unity;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/132/1/012022/pdf
DOI  :  10.1088/1755-1315/132/1/012022
来源: IOP
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【 摘 要 】

Anelastic attenuation process during seismic wave propagation is the trigger of seismic non-stationary characteristic. An absorption and a scattering of energy are causing the seismic energy loss as the depth increasing. A series of thin reservoir layers found in the study area is located within Talang Akar Fm. Level, showing an indication of interpretation pitfall due to attenuation effect commonly occurred in deeper level seismic data. Attenuation effect greatly influences the seismic images of deeper target level, creating pitfalls in several aspect. Seismic amplitude in deeper target level often could not represent its real subsurface character due to a low amplitude value or a chaotic event nearing the Basement. Frequency wise, the decaying could be seen as the frequency content diminishing in deeper target. Meanwhile, seismic amplitude is the simple tool to point out Direct Hydrocarbon Indicator (DHI) in preliminary Geophysical study before a further advanced interpretation method applied. A quick-look of Post-Stack Seismic Data shows the reservoir associated with a bright spot DHI while another bigger bright spot body detected in the North East area near the field edge. A horizon slice confirms a possibility that the other bright spot zone has smaller delineation; an interpretation pitfall commonly occurs in deeper level of seismic. We evaluates this pitfall by applying Gabor Deconvolution to address the attenuation problem. Gabor Deconvolution forms a Partition of Unity to factorize the trace into smaller convolution window that could be processed as stationary packets. Gabor Deconvolution estimates both the magnitudes of source signature alongside its attenuation function. The enhanced seismic shows a better imaging in the pitfall area that previously detected as a vast bright spot zone. When the enhanced seismic is used for further advanced reprocessing process, the Seismic Impedance and Vp/Vs Ratio slices show a better reservoir delineation, in which the pitfall area is reduced and some morphed as background lithology. Gabor Deconvolution removes the attenuation by performing Gabor Domain spectral division, which in extension also reduces interpretation pitfall in deeper target seismic.

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