There are basins with proven hydrocarbon and geothermal sources across western Anatolia. Only a few moderate-scale tomography studies investigate their velocity structure and stratigraphical architecture. We present the first 3-D Neogene velocity-depth model of the Gulf of İzmir down to ∼1.7 km. The aim is displaying a better portrait of the 3-D stratigraphical architecture, velocity structure of the Gulf of İzmir, and constitute a solid foundation for future studies. We provide the first 3-D view of the complex Late-Miocene basement topography representing an unconformity surface. It consists of basins and ridges separating the Miocene basement (SSU3) and overlying Plio-Quaternary deposits (SSU2 and SSU1). Four N[sbnd]S oriented volcanic ridges accommodate offshore Uzun Island, Karaburun, and Foça. They border a basin with a thickness of ∼720 m in the mid-central and a deeper one with ∼1400 m in the northernmost sector of the gulf. The 3-D P-wave traveltime tomography results indicate...

Neogene stratigraphic architecture and three-dimensional velocity structure beneath the Gulf of İzmir (western Anatolia) from reflection traveltime tomography

Bohm G.
2023-01-01

Abstract

There are basins with proven hydrocarbon and geothermal sources across western Anatolia. Only a few moderate-scale tomography studies investigate their velocity structure and stratigraphical architecture. We present the first 3-D Neogene velocity-depth model of the Gulf of İzmir down to ∼1.7 km. The aim is displaying a better portrait of the 3-D stratigraphical architecture, velocity structure of the Gulf of İzmir, and constitute a solid foundation for future studies. We provide the first 3-D view of the complex Late-Miocene basement topography representing an unconformity surface. It consists of basins and ridges separating the Miocene basement (SSU3) and overlying Plio-Quaternary deposits (SSU2 and SSU1). Four N[sbnd]S oriented volcanic ridges accommodate offshore Uzun Island, Karaburun, and Foça. They border a basin with a thickness of ∼720 m in the mid-central and a deeper one with ∼1400 m in the northernmost sector of the gulf. The 3-D P-wave traveltime tomography results indicate...
2023
Geothermal; Gulf of İzmir; Low velocity zone; Seismic tomography; Traveltime tomography; Western Anatolia;
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14083/18602
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