Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6447226 | Journal of Applied Geophysics | 2015 | 37 Pages |
Abstract
Gravity can be considered an optimal geophysical method for cave detection, given the high density contrast between an empty cavity and the surrounding materials. A number of methods can be used for regional and residual gravity anomaly separation, although they have not been tested in natural scenarios. With the purpose of comparing the different methods, we calculate the residual anomalies associated with the karst system of Gruta de las Maravillas whose cave morphology and dimensions are well-known. A total of 1857 field measurements, mostly distributed in a regular grid of 10Â ÃÂ 10Â m, cover the studied area. The microgravity data were acquired using a Scintrex CG5 gravimeter and topography control was carried out with a differential GPS. Regional anomaly maps were calculated by means of several algorithms to generate the corresponding residual gravimetric maps: polynomial first-order fitting, fast Fourier transformation with an upward continuation filter, moving average, minimum curvature and kriging methods. Results are analysed and discussed in terms of resolution, implying the capacity to detect shallow voids. We propose that polynomial fitting is the best technique when microgravity data are used to obtain the residual anomaly maps for cave detection.
Related Topics
Physical Sciences and Engineering
Earth and Planetary Sciences
Geophysics
Authors
F.J. MartÃnez-Moreno, J. Galindo-ZaldÃvar, A. Pedrera, T. Teixidó, J.A. Peña, L. González-Castillo,