Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region

Ecuador has several seismicity sources, including the Nazca – South America megathrust in the west, the Interandean Fault System (IFS) between the Cordilleras Occidental and Real, and an active back-arc fold and thrust belt in the East. The surface deformation associated with the subduction megathru...

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Hlavní autor: Goyes Gordon, Jhon Manuel (author)
Médium: bachelorThesis
Jazyk:eng
Vydáno: 2022
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On-line přístup:http://repositorio.yachaytech.edu.ec/handle/123456789/547
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author Goyes Gordon, Jhon Manuel
author_facet Goyes Gordon, Jhon Manuel
author_role author
collection Repositorio Universidad Yachay Tech
dc.contributor.none.fl_str_mv Pineda Arias, Israel Gustavo
dc.creator.none.fl_str_mv Goyes Gordon, Jhon Manuel
dc.date.none.fl_str_mv 2022-08-22T15:16:08Z
2022-08-22T15:16:08Z
2022-08
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv http://repositorio.yachaytech.edu.ec/handle/123456789/547
dc.language.none.fl_str_mv eng
dc.publisher.none.fl_str_mv Universidad de Investigación de Tecnología Experimental Yachay
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:Repositorio Universidad Yachay Tech
instname:Universidad Yachay Tech
instacron:Yachay
dc.subject.none.fl_str_mv Radar de Apertura Sintética Interferométrica (InSAR)
Procesamiento SAR
Radar de Apertura Sintética (SAR)
Interferometric Synthetic Aperture Radar (InSAR)
Synthetic Aperture Radar (SAR)
SAR processing
dc.title.none.fl_str_mv Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
dc.type.none.fl_str_mv info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/bachelorThesis
description Ecuador has several seismicity sources, including the Nazca – South America megathrust in the west, the Interandean Fault System (IFS) between the Cordilleras Occidental and Real, and an active back-arc fold and thrust belt in the East. The surface deformation associated with the subduction megathrust has been well constrained in prior studies, but this is not the case for the other two systems, representing a significant gap in the characterization of seismic hazards. The IFS runs directly under or close to several major cities, including Quito, Riobamba, and Ibarra. Earthquakes have destroyed all these cities in the past. Near Quito, the IFS has a fault called the Quito Fault, which is a thrust fault that underlies and uplifts the city. This study performs Interferometric Synthetic Aperture Radar (InSAR). InSAR is a tool to characterize the deformation caused by different sources, including faults and landslides using Synthetic Aperture Radar (SAR) images. The processing used in this project will use 280 Sentinel-1 images taken over the area of Quito and the valleys to its east. Then, we use time-series analysis to obtain deformation rates. Moreover, we addressed the main methodological aspects of the processing steps and their implications. The processing of the data collected of Sentinel-1 is an expensive task, so we need to use a High-Performance Computing (HPC) system and different computational techniques for spaceborne geodetic data to process all the data collected in this project. In general, our results contribute to having a better understanding of seismic hazards in Ecuador. The overarching goal of this work is to develop a deformation map constructed by the deformation caused by the Quito Fault and other sources.
eu_rights_str_mv openAccess
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spelling Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador RegionGoyes Gordon, Jhon ManuelRadar de Apertura Sintética Interferométrica (InSAR)Procesamiento SARRadar de Apertura Sintética (SAR)Interferometric Synthetic Aperture Radar (InSAR)Synthetic Aperture Radar (SAR)SAR processingEcuador has several seismicity sources, including the Nazca – South America megathrust in the west, the Interandean Fault System (IFS) between the Cordilleras Occidental and Real, and an active back-arc fold and thrust belt in the East. The surface deformation associated with the subduction megathrust has been well constrained in prior studies, but this is not the case for the other two systems, representing a significant gap in the characterization of seismic hazards. The IFS runs directly under or close to several major cities, including Quito, Riobamba, and Ibarra. Earthquakes have destroyed all these cities in the past. Near Quito, the IFS has a fault called the Quito Fault, which is a thrust fault that underlies and uplifts the city. This study performs Interferometric Synthetic Aperture Radar (InSAR). InSAR is a tool to characterize the deformation caused by different sources, including faults and landslides using Synthetic Aperture Radar (SAR) images. The processing used in this project will use 280 Sentinel-1 images taken over the area of Quito and the valleys to its east. Then, we use time-series analysis to obtain deformation rates. Moreover, we addressed the main methodological aspects of the processing steps and their implications. The processing of the data collected of Sentinel-1 is an expensive task, so we need to use a High-Performance Computing (HPC) system and different computational techniques for spaceborne geodetic data to process all the data collected in this project. In general, our results contribute to having a better understanding of seismic hazards in Ecuador. The overarching goal of this work is to develop a deformation map constructed by the deformation caused by the Quito Fault and other sources.En Ecuador existen varias fuentes de sismicidad, estas incluyen la mega falla Nazca-Sudamericana en el oeste, el Sistema de Fallas Interandinas (SFI) entre las Cordilleras Occidental y Real, y un cinturón de pliegues y fracturas del arco posterior activo en el este. La deformación superficial asociada a la mega falla de subducción ha sido bien delimitada en estudios anteriores, pero no es el caso de los otros dos sistemas, lo que representa un vacío importante en la caracterización de los riesgos sísmicos. El SFI pasa directamente por debajo o cerca de varias ciudades importantes, como Quito, Riobamba e Ibarra. Los terremotos han destruido todas estas ciudades en el pasado. Cerca de Quito, el IFS tiene una falla llamada Falla de Quito, que es una falla de empuje que subyace y eleva la ciudad. Este estudio usa la técnica del Radar de Apertura Sintética Interferométrica (InSAR). InSAR es una herramienta que permite caracterizar la deformación causada por diferentes fuentes, incluyendo fallas y deslizamientos, utilizando imágenes de Radar de Apertura Sintética (SAR). Para el desarrollo de este proyecto se utilizará 280 imágenes del satélite Sentinel-1 tomadas sobre la zona de Quito y los valles del este. A continuación, utilizaremos un análisis de series temporales para obtener los índices de deformación. Además, abordaremos los principales aspectos metodológicos de los pasos de procesamiento y sus implicaciones. El procesamiento de los datos recogidos de Sentinel-1 es una tarea costosa, por lo que necesitamos utilizar un sistema de computación de alto rendimiento (HPC, por sus siglas en Inglés) y diferentes técnicas computacionales para datos geodésicos espaciales para procesar todos los datos recogidos en este proyecto. En general esperamos que nuestros resultados contribuyen a tener una mejor comprensión de los riesgos sísmicos en Ecuador mediante la creación de mapas de deformación.Ingeniero/a en Tecnologías de la InformaciónUniversidad de Investigación de Tecnología Experimental YachayPineda Arias, Israel Gustavo2022-08-22T15:16:08Z2022-08-22T15:16:08Z2022-08info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/bachelorThesisapplication/pdfhttp://repositorio.yachaytech.edu.ec/handle/123456789/547enginfo:eu-repo/semantics/openAccessreponame:Repositorio Universidad Yachay Techinstname:Universidad Yachay Techinstacron:Yachay2025-07-08T17:50:19Zoai:repositorio.yachaytech.edu.ec:123456789/547Institucionalhttps://repositorio.yachaytech.edu.ec/Universidad públicahttps://www.yachaytech.edu.ec/https://repositorio.yachaytech.edu.ec/oaiEcuador...opendoar:102842025-07-08T17:50:19falseInstitucionalhttps://repositorio.yachaytech.edu.ec/Universidad públicahttps://www.yachaytech.edu.ec/https://repositorio.yachaytech.edu.ec/oai.Ecuador...opendoar:102842025-07-08T17:50:19Repositorio Universidad Yachay Tech - Universidad Yachay Techfalse
spellingShingle Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
Goyes Gordon, Jhon Manuel
Radar de Apertura Sintética Interferométrica (InSAR)
Procesamiento SAR
Radar de Apertura Sintética (SAR)
Interferometric Synthetic Aperture Radar (InSAR)
Synthetic Aperture Radar (SAR)
SAR processing
status_str publishedVersion
title Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
title_full Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
title_fullStr Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
title_full_unstemmed Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
title_short Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
title_sort Interferometry computation of advanced land observing satellite (ALOS-2) data for the northern Ecuador Region
topic Radar de Apertura Sintética Interferométrica (InSAR)
Procesamiento SAR
Radar de Apertura Sintética (SAR)
Interferometric Synthetic Aperture Radar (InSAR)
Synthetic Aperture Radar (SAR)
SAR processing
url http://repositorio.yachaytech.edu.ec/handle/123456789/547