We explore a new approach to evaluate the effect of soil electromagnetic parameters on early-time ground-penetrating radar GPR signals. The analysis is performed in a time interval which contains the direct airwaves and ground waves, propagating between transmitting and receiving antennas. To perform the measurements we have selected a natural test site characterized by very strong lateral gradient of the soil electrical properties. To evaluate the effect of the subsoil permittivity and conductivity on the radar response we compare the envelope amplitude of the GPR signals received in the first 12 ns within 4 ns-wide windows, with the electrical properties r andDC determined using time-domain reflectometry TDR. The results show that the constitutive soil parameters strongly influence early-time signals, suggesting a novel approach for estimating the spatial variability of water content with GPR.
Pettinelli, E., G., V., B., D.P., Mattei, E., A., D.M., A., D.S., et al. (2007). Correlation between near-surface electromagnetic soil parameters and early-time GPR signals: an experimental study. GEOPHYSICS, 72(2), A22-A28 [10.1190/1.2435171].
Correlation between near-surface electromagnetic soil parameters and early-time GPR signals: an experimental study
PETTINELLI, Elena;MATTEI, ELISABETTA;
2007-01-01
Abstract
We explore a new approach to evaluate the effect of soil electromagnetic parameters on early-time ground-penetrating radar GPR signals. The analysis is performed in a time interval which contains the direct airwaves and ground waves, propagating between transmitting and receiving antennas. To perform the measurements we have selected a natural test site characterized by very strong lateral gradient of the soil electrical properties. To evaluate the effect of the subsoil permittivity and conductivity on the radar response we compare the envelope amplitude of the GPR signals received in the first 12 ns within 4 ns-wide windows, with the electrical properties r andDC determined using time-domain reflectometry TDR. The results show that the constitutive soil parameters strongly influence early-time signals, suggesting a novel approach for estimating the spatial variability of water content with GPR.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.