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Radar de Penetración Terrestre×Inversión Sísmica de Forma de Onda Completa×
CampoGeofísicaGeofísica
FamiliaProcess / pipelineProcess / pipeline
Año de origen19891984
Autor originalJames Davis and Anthony AnnanAlbert Tarantola
TipoShallow subsurface electromagnetic pulse detectionSeismic imaging and model parameterization technique
Fuente seminalDavis, J. L., & Annan, A. P. (1989). Ground-penetrating radar for high-resolution mapping of soil and rock stratigraphy. Geophysical Prospecting, 37(5), 531-551. DOI ↗Tarantola, A. (1984). Inversion of seismic reflection data in the acoustic approximation. Geophysics, 49(8), 1259-1266. DOI ↗
AliasGPRFWI
Relacionados33
ResumenGround-Penetrating Radar (GPR) is a near-surface geophysical method that uses high-frequency electromagnetic pulses (typically 10 MHz to 2.5 GHz) to image shallow subsurface structures with exceptional spatial resolution. Pioneered by Davis and Annan in 1989, GPR is widely used in archaeology, civil engineering, environmental assessment, and shallow mineral exploration due to its ability to resolve features at decimeter to centimeter scales.Seismic Full-Waveform Inversion (FWI) is a computational technique that reconstructs detailed subsurface velocity and impedance models by iteratively fitting synthetic seismic waveforms to observed data. Introduced by Albert Tarantola in 1984, FWI has become the leading method for high-resolution imaging in exploration geophysics, engineering seismology, and subsurface characterization.
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ScholarGateComparar métodos: Ground-Penetrating Radar · Seismic Full-Waveform Inversion. Recuperado el 2026-06-19 de https://scholargate.app/es/compare