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Research Article

GPR analysis to detect subsidence: a case study on a loaded reinforced concrete pavement

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Article: 2027420 | Received 08 Oct 2021, Accepted 05 Jan 2022, Published online: 22 Jan 2022

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Read on this site (3)

Vega Perez-Gracia, Mercedes Solla & Simona Fontul. (2024) Analysis of the GPR signal for moisture detection: application to heritage buildings. International Journal of Architectural Heritage 18:2, pages 230-253.
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Mercedes Solla, José Manuel López-Leira, Alex Alonso-Díaz & Juan Luis Rodríguez. (2024) Ground-penetrating Radar and Geotechnical Analyses to Investigate the Foundation Settlements of an Indiana House in NW Spain. International Journal of Architectural Heritage 18:2, pages 215-229.
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Articles from other publishers (5)

Alex Alonso-Díaz, Josué Casado-Rabasco, Mercedes Solla & Susana Lagüela. (2023) Using InSAR and GPR Techniques to Detect Subsidence: Application to the Coastal Area of “A Xunqueira” (NW Spain). Remote Sensing 15:15, pages 3729.
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Alex Alonso-Díaz, Mercedes Solla, Simona Fontul, Vânia Marecos, Maria de Lurdes Antunes & Jorge C. Pais. (2023) A Non-Invasive and Multi-Scale Approach to Detect Subsidence in Pavements: InSAR, FWD and GPR. A Non-Invasive and Multi-Scale Approach to Detect Subsidence in Pavements: InSAR, FWD and GPR.
Alex Alonso-Díaz, Mercedes Solla, Ahmed Elseicy & J. L. Rodríguez. (2023) The Complementarity of GPR and MT-InSAR for Pavement Damage Monitoring: Preliminary Results. The Complementarity of GPR and MT-InSAR for Pavement Damage Monitoring: Preliminary Results.
Ahmed Elseicy, Alex Alonso-Díaz, Mercedes Solla, Mezgeen Rasol & Sonia Santos-Assunçao. (2022) Combined Use of GPR and Other NDTs for Road Pavement Assessment: An Overview. Remote Sensing 14:17, pages 4336.
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Federico Lombardi, Frank Podd & Mercedes Solla. (2022) From Its Core to the Niche: Insights from GPR Applications. Remote Sensing 14:13, pages 3033.
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