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Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements

The characterization of soil is essential for the evaluation of seismic hazard, because soil properties strongly influence the damage caused by earthquakes. Methods based on seismic noise are the most commonly used in soil characterization. Concretely, methods based on seismic noise array measuremen...

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Autores principales: Soler-Llorens, Juan Luis, Galiana-Merino, Juan José, Giner-Caturla, José Juan, Rosa-Cintas, Sergio, Nassim-Benabdeloued, Boualem Youcef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806152/
https://www.ncbi.nlm.nih.gov/pubmed/31546649
http://dx.doi.org/10.3390/s19194087
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author Soler-Llorens, Juan Luis
Galiana-Merino, Juan José
Giner-Caturla, José Juan
Rosa-Cintas, Sergio
Nassim-Benabdeloued, Boualem Youcef
author_facet Soler-Llorens, Juan Luis
Galiana-Merino, Juan José
Giner-Caturla, José Juan
Rosa-Cintas, Sergio
Nassim-Benabdeloued, Boualem Youcef
author_sort Soler-Llorens, Juan Luis
collection PubMed
description The characterization of soil is essential for the evaluation of seismic hazard, because soil properties strongly influence the damage caused by earthquakes. Methods based on seismic noise are the most commonly used in soil characterization. Concretely, methods based on seismic noise array measurements allow for the estimation of Rayleigh wave dispersion curves and, subsequently, shear-wave velocity profiles. The equipment required for the application of this technique is usually very expensive, which could be a significant economic challenge for small research groups. In this work, we have developed a wireless multichannel seismic noise recorder system (Geophonino-W), which is suitable for array measurements. Each station includes a microcontroller board (Arduino), a conditioning circuit, an Xbee module, an SD card, and a GPS module. Several laboratory tests were carried out in order to study the performance of the Geophonino-W: A frequency response test (impulse response and noise); synchronization test; and battery duration test. Comparisons of Geophonino-W with the commercial systems and field measurements were also carried out. The estimated dispersion curves obtained using the proposed system were compared with the ones obtained using other commercial equipment, demonstrating the effectiveness of Geophonino-W for seismic noise array measurements. Geophonino-W is an economic open-source and hardware system that is available to any small research group or university.
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spelling pubmed-68061522019-11-07 Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements Soler-Llorens, Juan Luis Galiana-Merino, Juan José Giner-Caturla, José Juan Rosa-Cintas, Sergio Nassim-Benabdeloued, Boualem Youcef Sensors (Basel) Article The characterization of soil is essential for the evaluation of seismic hazard, because soil properties strongly influence the damage caused by earthquakes. Methods based on seismic noise are the most commonly used in soil characterization. Concretely, methods based on seismic noise array measurements allow for the estimation of Rayleigh wave dispersion curves and, subsequently, shear-wave velocity profiles. The equipment required for the application of this technique is usually very expensive, which could be a significant economic challenge for small research groups. In this work, we have developed a wireless multichannel seismic noise recorder system (Geophonino-W), which is suitable for array measurements. Each station includes a microcontroller board (Arduino), a conditioning circuit, an Xbee module, an SD card, and a GPS module. Several laboratory tests were carried out in order to study the performance of the Geophonino-W: A frequency response test (impulse response and noise); synchronization test; and battery duration test. Comparisons of Geophonino-W with the commercial systems and field measurements were also carried out. The estimated dispersion curves obtained using the proposed system were compared with the ones obtained using other commercial equipment, demonstrating the effectiveness of Geophonino-W for seismic noise array measurements. Geophonino-W is an economic open-source and hardware system that is available to any small research group or university. MDPI 2019-09-21 /pmc/articles/PMC6806152/ /pubmed/31546649 http://dx.doi.org/10.3390/s19194087 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Soler-Llorens, Juan Luis
Galiana-Merino, Juan José
Giner-Caturla, José Juan
Rosa-Cintas, Sergio
Nassim-Benabdeloued, Boualem Youcef
Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements
title Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements
title_full Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements
title_fullStr Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements
title_full_unstemmed Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements
title_short Geophonino-W: A Wireless Multichannel Seismic Noise Recorder System for Array Measurements
title_sort geophonino-w: a wireless multichannel seismic noise recorder system for array measurements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806152/
https://www.ncbi.nlm.nih.gov/pubmed/31546649
http://dx.doi.org/10.3390/s19194087
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