Processing, modeling and interpretation of wide-angle seismic data of an active plate boundary, south of Cyprus

dc.contributor.authorRahimi, Ayda
dc.coverage.spatialCyprus
dc.date.issued2016-04
dc.description.abstractCyprus lies at the southern edge of the Aegean-Anatolian microplate, caught in the convergence of Africa and Eurasia. Subduction of the African plate below Cyprus has probably ceased and this has been attributed to the docking of the Eratosthenes Seamount microcontinental fragment on the northern edge of the African plat in the subduction zone. In early 2010, on R.V. Maria S. Merian, we conducted a wide-angle seismic survey to test the hypothesis that the Hecataeus Ridge, another possible microcontinental block lying immediately offshore SE Cyprus, might be related to an earlier docking event. The upper crust of southern Cyprus is dominated by ophiolites, with seismic velocities of up to 7 km s⁻¹. A wide-angle seismic profile along Hecataeus Ridge was populated with 15 Canadian and German ocean-bottom seismometers at 5 km intervals and these recorded shots from a 6000 cu. in. air gun array, fired approximately every 100 m. Rough topography of the seabed has made picking of phases and their modeling a demanding task. Bandpass and coherency filtering have enabled us to pick phases out to around 80 km. Tomographic inversion of short-range first arrivals provided an initial model of the shallow sub- seabed structure. Forward modeling by ray-tracing, using the code of Zelt and Smith, was then used to model crustal structure down to depths of around 25 km, with no evidence of reflections from Moho. Modeling results provide good control on P-wave velocities in the top 20 km and some indications of deeper events. There is no evidence of true velocities approaching 7 km.s⁻¹ in the top 20 km below the Ridge that might indicate the presence of ophiolitic rocks. Regional gravity and magnetic field data tend to support this proposition. We thus conclude that Hecataeus Ridge is not composed of characteristically ophiolitic, Cyprus (upper plate) crust, and most likely it might be derived from the African (lower) plate.
dc.description.noteIncludes bibliographical references (pages 95-105).
dc.format.extentxv, 159 pages: illustrations (some color), maps (some color)
dc.format.mediumText
dc.identifier.urihttps://hdl.handle.net/20.500.14783/3274
dc.language.isoen
dc.publisherMemorial University of Newfoundland
dc.rights.licenseThe author retains copyright ownership and moral rights in this thesis. Neither the thesis nor substantial extracts from it may be printed or otherwise reproduced without the author's permission.
dc.subjectgeophysics
dc.subjectseismic data
dc.subjectinterpretation
dc.subjectprocessing
dc.subject.lcshMarine geophysics--Cyprus
dc.subject.lcshPlate tectonics--Cyprus
dc.subject.lcshSeismic reflection method
dc.titleProcessing, modeling and interpretation of wide-angle seismic data of an active plate boundary, south of Cyprus
dc.typeMaster thesis
mem.campusSt. John's Campus
mem.convocationDate2016-10
mem.departmentEarth Sciences
mem.divisionsEarthScience
mem.facultyFaculty of Science
mem.fullTextStatuspublic
mem.institutionMemorial University of Newfoundland
mem.isPublishedunpub
mem.thesisAuthorizedNameRahimi, Ayda
thesis.degree.disciplineEarth Sciences
thesis.degree.grantorMemorial University of Newfoundland
thesis.degree.levelmasters
thesis.degree.nameM. Sc.

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