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Ground deformation analysis caused by post-2013 earthquake in Bohol, Philippines

dc.citation.journaltitleSpatial Information Research
dc.contributor.authorBauzon, Ma. Divina Angela I.
dc.contributor.authorReyes, Rosalie B.
dc.contributor.authorBlanco, Ariel C.
dc.contributor.authorSiringan, Fernando P.
dc.coverage.spatialBohol
dc.date.accessioned2025-03-30T12:32:37Z
dc.date.issued2022-08-16
dc.description.abstractAfter the 2013 Mw 7.2 earthquake that occurred in Bohol, the shoreline specifically in Loon and Maribojoc was observed to shift seaward due to ground uplift. This study analyzes the post-earthquake shoreline movement, specifically a 12 km coastal strip in Loon and Maribojoc, and ground deformation of the West Bohol area through Sentinel-1 image processing techniques. From October 2014 to April 2018, the DSAS linear regression shoreline rates were − 4.36 m/yr in Loon and − 1.69 m/yr in Maribojoc, indicative of a landward movement of 91.4% and 88.8% of shoreline transects in Loon and Maribojoc, respectively. PSInSAR revealed varying rates of VLM in the study area from October 2014 to December 2018 such that Loon and Maribojoc exhibit a subsidence rate of − 2 to − 8 mm/yr. The correlation between the shoreline retreat and the land subsidence in the study area is 87%, indicating a possible elastic rebound after the earthquake. The portion of Tagbilaran City on its northern side exhibits land subsidence of − 2 to − 6 mm/yr while its southern side exhibits land uplift of 0–2 mm/yr. The relative sea level fall from TGSL measurements indicates an uplift in the location of the tide gauge in Tagbilaran City.
dc.identifier.citationBauzon, M. D. A. I., Reyes, R. B., Blanco, A. C., & Siringan, F. P. (2022). Ground deformation analysis caused by post-2013 earthquake in Bohol, Philippines. Spatial Information Research, 30(6), 791-807.
dc.identifier.doi10.1007/s41324-022-00469-y
dc.identifier.issn2366-3286
dc.identifier.issn2366-3294
dc.identifier.urihttps://hdl.handle.net/20.500.14697/215
dc.language.isoen
dc.publisherSpringer Science and Business Media LLC
dc.subjectEarthquakes
dc.subjectSeismology
dc.subjectLand subsidence
dc.subjectCoastal erosion
dc.subjectRemote sensing
dc.subject.agrovocearthquakes
dc.subject.agrovoccoastal landforms
dc.subject.agrovocremote sensing
dc.subject.lcshEarthquakes
dc.subject.lcshShorelines
dc.subject.lcshSubsidences (Earth movements)
dc.subject.lcshRemote sensing
dc.subject.odcChallenge 6: Increase community resilience to ocean hazards
dc.subject.odcChallenge 8: Create a digital representation of the Ocean
dc.subject.sdgSDG 11 - Sustainable cities and communities
dc.subject.sdgSDG 13 - Climate action
dc.subject.sdgSDG 15 - Life on land
dc.titleGround deformation analysis caused by post-2013 earthquake in Bohol, Philippines
dc.typeArticle
local.subjectShoreline
local.subjectGround deformation
local.subjectPersistent Scatterer Interferometric Synthetic Aperture Radar (PSInSAR)
local.subjectDigital Shoreline Analysis System (DSAS)
local.subjectElastic rebound
local.subjectBohol
local.subjectPhilippines
local.subjectSentinel-1
oaire.citation.endPage807
oaire.citation.issue6
oaire.citation.startPage791
oaire.citation.volume30

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