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Multi‐scale and multi‐parametric analysis of Late Quaternary event deposits within the active Corinth Rift (Greece)

2021/12/06 by Gino de Gelder, Gino De Gelder, Mai‐Linh Doan +10 · 2 citations
Arts and Humanities · Earth and Planetary Sciences · #Geology #Geology and Paleoclimatology Research #Maritime and Coastal Archaeology #Paleontology #Rift #Seafloor spreading #Sedimentary depositional environment #Sedimentary rock #Seismology #Structural basin #Tectonics #Turbidite #earthquake and tectonic studies

paper · open access · doi:10.1111/sed.12964

published in Sedimentology 69(4), 1573-1598 (Wiley)

openalex publication_date 2021/12/06 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22

Abstract

A major challenge in subaqueous paleoseismology is to understand the relationship between an earthquake/tsunami and a sedimentary event deposit recorded in drillcores. Expedition 381 of the International Ocean Discovery Program was dedicated to understanding the development of the Corinth Rift, Greece. Its drilled cores provide a potentially important resource to better understand depositional mechanisms of sedimentary event deposits within changing open marine to (semi-)isolated environments. To achieve this, we analyse U- channels and spatula samples from the topmost part (0-65 m below seafloor maximum depth) of holes M0078B and M0079A (~0-25 ka), using high-resolution X-Ray microtomography in combination with grain-size, magnetic and XRF measurements. Structures and grain array are resolved down to 10 μm in voxel size, characterizing the geometry of the basal surface of turbidite+homogenite sedimentary event deposits, and the internal base-upwards evolution at high-resolution scale. Our analysis suggests these types of deposits are more complex than previously proposed, especially at the transition between the basal coarse turbidite sub-unit and the fine-grained homogenite upper sub-unit, as well as within the homogenite. Combined with the other observations and parameters, X-ray microtomography results are consistent with the interpretation of the Corinth turbidite+homogenite deposits as having predominantly originated from seismic and/or aseismic slope failures followed by tsunami/seiche effects, despite subtle differences according to depositional environment.

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