Earth Science Frontiers ›› 2025, Vol. 32 ›› Issue (2): 126-139.DOI: 10.13745/j.esf.sf.2024.6.50
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JI Mengfei1,2(), WANG Jiliang1,*(
), WANG Weiwei3, ZHANG Jiecheng4, LIU Xueqin5,6, WU Shiguo1
Received:
2024-06-15
Revised:
2024-11-08
Online:
2025-03-25
Published:
2025-03-25
CLC Number:
JI Mengfei, WANG Jiliang, WANG Weiwei, ZHANG Jiecheng, LIU Xueqin, WU Shiguo. Geophysical characterization of gas hydrate reservoir in fine-grained sediment in Shenhu area[J]. Earth Science Frontiers, 2025, 32(2): 126-139.
Fig.6 Comparison of migrated seismic sections before and after fine velocity analysis in the study area (a) Migrated seismic section without high-resolution velocity model; (b) Migrated seismic section with high-resolution velocity model. The white short lines indicate the BSR, the solid red lines mark the faults, and the dashed blue lines represent the approximate extent of the gas chimney.
Fig.8 Well-seismic tie at Site SH-02 (a) The observed seismogram near the well; (b) The synthetic seismogram; (c) The cross-correlation between the real and synthetic seismogram; (d) Extracted seismic wavelet.
Fig.9 The inversion region and result profiles (a) The target region and well location; (b) P-wave impedance section and well curve; (c) S-wave impedance section and well curve; (d) Poisson ratio section.
Fig.10 Local enlarged seismic profile and multi-elastic parameter profiles of hydrate reservoir: (a) The locally enlarged seismic profile; (b) P-wave impedance; (c) Poisson ratio; (d) S-wave impedance;(e) Lambda*Rho; (f) Mu*Rho. White arrows indicate hydrates, and black arrows indicate free gas.
Fig.12 Characterization of hydrate and free gas distribution:(a) P-wave impedance of hydrate reservoir and its local magnifications;(b) P-wave impedance of free gas reservoir and its local magnifications.
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