Composition of volcanic tuffs, neotectonics and structure of the upper sedimentary cover of the Osborn plateau (Indian ocean).

Marinova, Yu. G., Levchenko, O. V., Portnyagin, Maxim and Werner, Reinhard (2021) Composition of volcanic tuffs, neotectonics and structure of the upper sedimentary cover of the Osborn plateau (Indian ocean). Oceanology, 60 (5). pp. 691-703. DOI 10.1134/S000143702004013X.

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Abstract

The Osborn Plateau is a large intraplate elevation in the eastern Indian Ocean, which has been poorly studied by geological and geophysical methods. On cruise SO258/1 aboard the R/V Sonne, new data were collected by Parasound seismic processing, multibeam survey, and, for the first time, dredging. Faults in the sedimentary cover, which extend to the seafloor surface, indicate high neotectonic activity in the area of the Osborn Plateau. It may have continued up to the present, as well as in the adjacent segment of the Ninetyeast Ridge, where strong earthquakes are recorded. Two reflectors A and C in the upper part of the sedimentary cover mark global regressive changes in the World Ocean level at the Pliocene–Pleistocene and Miocene–Pliocene and boundaries. Reflector B in sediments at the Lower–Upper Pliocene boundary is associated with a change in the regional hydrodynamic regime at the time in the eastern Indian Ocean. Reflector B at the Lower–Upper Pliocene boundary is associated with a change in the local hydrodynamic regime in the region of the plateau and was caused by uncompensated sedimentation. As a result of dredging, strongly altered vitroclastic tuffs were obtained, consisting of palagonized ash particles and lapilli. Analysis of geochemical data on the composition of palagonite made it possible to reconstruct the main geochemical features of the primary composition of glass in tuffs, in particular, high enrichment in incompatible elements (Nb, Zr, Ti, La, etc.). The results of studying the dredged rocks suggest that tuffs dredged on the Osborn Plateau were formed as a result of explosive volcanic eruptions of alkaline basalts under subaerial or relatively shallow conditions and represent the latest eruption products in the region.

Document Type: Article
Additional Information: Russian Text © The Author(s), 2020, published in Okeanologiya, 2020, Vol. 60, No. 5, pp. 791–804 ; English Text published 02 March 2021: Oceanology, 2020, Vol. 60, No. 5, pp. 691–703. © Pleiades Publishing, Inc., 2020
Keywords: Osborn Plateau, Indian Ocean, seismic profiling, multibeam bathymetry, reflector, fault, dredging, palagonite
Research affiliation: OceanRep > GEOMAR > FB4 Dynamics of the Ocean Floor > FB4-MUHS
Main POF Topic: PT3: Restless Earth
Refereed: Yes
Open Access Journal?: No
Publisher: Springer
Projects: INGON
Expeditions/Models/Experiments:
Date Deposited: 12 Oct 2020 11:16
Last Modified: 07 Feb 2024 15:34
URI: https://oceanrep.geomar.de/id/eprint/50671

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