期刊
APPLIED SCIENCES-BASEL
卷 12, 期 19, 页码 -出版社
MDPI
DOI: 10.3390/app12199611
关键词
quantitative geomorphology; seismic geomorphology; seismic reflection; 3D imaging; earth surface reconstruction; remote sensing; aerial photogrammetry; geological mapping; integrated geomorphology
类别
资金
- King Fahd University of Petroleum & Minerals through College of Petroleum Engineering & Geosciences Startup grant [SF18060]
- REACT EU-National opera-tional program PON Research and Innovation [DM1062/2021]
This paper presents an overview of seismic and surface geomorphology techniques and proposes an integrated workflow for better geological mapping, 3D surface imaging, and reconstruction. The interpretation of sound waves can help reconstruct various geomorphological features, and the integration of surface and subsurface geomorphology techniques can increase accuracy in modeling and reduce data uncertainty.
Seismic reflection utilizes sound waves transmitted into the subsurface, reflected at rock boundaries, and recorded at the surface. Interpretation of their travel times and amplitudes are the key for reconstructing various geomorphological features across geological time (e.g., reefs, dunes, and channels). Furthermore, the integration of surface geomorphology technique mapping, such as digital elevation models, with seismic geomorphology can increase land and marine feature modelling and reduce data uncertainty, as well. This paper presents an overview of seismic and surface geomorphology techniques and proposes an integrated workflow for better geological mapping, 3D surface imaging, and reconstruction. We intend to identify which techniques are more often used and which approaches are more appropriate for better output results. We noticed that an integration of surface and subsurface geomorphology techniques could be beneficial for society in landscape mapping, reservoir characterization, and city/regional planning.
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