EGU21-9185
https://doi.org/10.5194/egusphere-egu21-9185
EGU General Assembly 2021
© Author(s) 2023. This work is distributed under
the Creative Commons Attribution 4.0 License.

​Near-Surface High Resolution Characterization of the Seismogenic Alhama de Murcia Strike-slip Fault 

Handoyo Handoyo1, Imma Palomeras2, Juan Alcalde1, Irene de Felipe1, David Martí3, Julian García-Mayordomo4, Jose Jesus Martínez-Díaz5, Teresa Teixidor6, Juan Miguel Insúa-Arevalo5, and Ramon Carbonell1
Handoyo Handoyo et al.
  • 1Geosciences Barcelona, (Geo3BCN-CSIC) Spain (handoyo.geophysics@gmail.com)
  • 2University of Salamanca, Salamanca, Spain
  • 3Lithica SCCL, Santa Coloma de Farners, Girona, Spain
  • 4Geological and Mining Institute of Spain, Madrid, Spain
  • 5Universidad Complutense de Madrid, Madrid, Spain
  • 6Universidad de Granada, Granada, Spain

In Spring 2011 (11th of May), the vicinity of Lorca city (Murcia, SE Iberian Peninsula) was hit by two main seismic shocks that reach a maximum magnitude of 5.2 Mw. The earthquake caused serious widespread damage in the city and its surroundings. Similar events have affected the area regularly in the past (for example: on May 6,1977, 4.2 mg). These events are distributed along a relatively broad band (roughly NE-SW oriented) parallel to the coast, associated to the activation of the Alhama de Murcia Fault (AMF), an oblique-slip (reverse-strike-slip) fault system located in the Eastern Betics Shear Zone. The current study aims to characterize the shallow subsurface across some of the surface outcrop of a few of the main faults that lie within this seismogenic strike-slip fault system. Six normal-incidence seismic reflection profiles were acquired in the area crossing the AMF and the Carrascoy fault, among others). This study focuses on the determination of the shear-wave velocity depth model by applying Multichannel Analysis of Surface Waves (MASW), using the shot records of the seismic reflection profiles. The 1D velocity-depth functions acquired were pasted together to obtain the final 2D velocity models. The hand-picked dispersion curves were inverted using two different approaches to address the consistency of the inversion schemes. The final models reveal relevant differences across the different fault zones, reflecting the heterogeneity and lateral variability that characterizes a complex seismogenic zone, a most probably, diffuse plate boundary.

This research is supported by: Generalitat de Catalunya (AGAUR) grant 2017SGR1022 (GREG); EU (H2020) 871121 (EPOS-SP); EIT-RawMaterials 17024 (SIT4ME), CGL2013-47412-C2-1-P.

How to cite: Handoyo, H., Palomeras, I., Alcalde, J., de Felipe, I., Martí, D., García-Mayordomo, J., Martínez-Díaz, J. J., Teixidor, T., Insúa-Arevalo, J. M., and Carbonell, R.: ​Near-Surface High Resolution Characterization of the Seismogenic Alhama de Murcia Strike-slip Fault , EGU General Assembly 2021, online, 19–30 Apr 2021, EGU21-9185, https://doi.org/10.5194/egusphere-egu21-9185, 2021.