Present-Day Crustal Velocity Field in Ecuador from cGPS Position Time Series

Author:

Arias-Gallegos Alejandro1ORCID,Borque-Arancón Mᵃ Jesús12,Gil-Cruz Antonio J.12ORCID

Affiliation:

1. Departamento de Ingeniería Cartográfica, Geodésica y Fotogrametría, Campus de las Lagunillas, Universidad de Jaén, 23071 Jaén, Spain

2. Centro de Estudios Avanzado en Ciencias de la Tierra, Energía y Medio Ambiente (CEACTEMA), Campus de las Lagunillas, Universidad de Jaén, 23071 Jaén, Spain

Abstract

The present study analyzes the GNSS time series obtained between the years 2017 and 2022 for the calculation of absolute and residual rates of Ecuador in 10 stations (ABEC, CUEC, ECEC, EPEC, FOEC, GZEC, MUEC, PLEC, RIOP, SEEC, TPC) of the continuous monitoring REGME network. Considering that the latest studies refer to periods 2012–2014 and Ecuador is located in an area of high seismic activity, it is important to update the GNSS rates. The RINEX data were provided by the Military Geographic Institute of Ecuador, the governing institution of geoinformation in that country; for processing, GipsyX scientific software was used with a PPP mode, considering 24 h sessions, and high precision was achieved. For the analysis of time series, the SARI platform was used. The series was modeled using a least-squares adjustment, which delivered the velocities for each station in the three local topocentric components. The results were contrasted with other studies, obtaining interesting conclusions as the presence of abnormal post-seismic rates stands out due to the high rate of seismic occurrence in Ecuador, and reaffirms the idea of a constant update of velocities for the Ecuadorian territory and the inclusion of the stochastic factor in the analysis of GNSS time series, since it can affect the ability to obtain the final GNSS velocities.

Funder

University of Jaen

RNM282 research group of Junta de Andalucía

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference35 articles.

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3. Luna, M. (2017). Contribución a la Definición de un Modelo de Velocidades de la Corteza Terrestre Para Ecuador a Partir de Datos GNSS, Universidad Politécnica de Madrid.

4. Quishpe, R., Tabera, H., and Bernal, I. (2003). Geometria de la Placa de Nazca en el Borde Occidental de Sudamerica a Partir de las Tendencias Medias de Sismicidad, Boletin de la Sociedad Geologica dl Perú.

5. Drewes, H. (2022, September 02). Differential Coordinate Changes (Velocities) vs. Coordinate Differences (Epoch Coordinates) for Realising the Time Dependency of the ITRF. Available online: https://www.sirgas.org/fileadmin/docs/Boletines/2017_Drewes_Differential_coordinate_changes_vs_coordinate_differences_for_ITRF_IAG_Kobe.pdf.

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