(Table 2) Age determination from different sediment cores of the Juan de Fuca Ridge

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Hauptverfasser: Costa, K M, McManus, Jerry F, Boulahanis, B, Carbotte, S M, Winckler, Gisela, Huybers, Peter, Langmuir, Charles H
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2017
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_version_ 1867171845973737472
author Costa, K M
McManus, Jerry F
Boulahanis, B
Carbotte, S M
Winckler, Gisela
Huybers, Peter
Langmuir, Charles H
author_facet Costa, K M
McManus, Jerry F
Boulahanis, B
Carbotte, S M
Winckler, Gisela
Huybers, Peter
Langmuir, Charles H
collection Datos científicos de ciencias marinas y ambientales
contents Sedimentation near mid-ocean ridges may differ from pelagic sedimentation due to the influence of the ridges' rough topography on sediment deposition and transport. This study explores whether the near-ridge environment responds to glacial-interglacial changes in climate and oceanography. New benthic d18O, radiocarbon, multi-sensor track, and physical property (sedimentation rates, density, magnetic susceptibility) data for seven cores on the Juan de Fuca Ridge provide multiple records covering the past 700,000 years of oceanographic history of the Northeast Pacific Ocean. Systematic variations in sediment density and coarse fraction correspond to glacial-interglacial cycles identified in benthic d18O, and these observations may provide a framework for mapping the d18O chronostratigraphy via sediment density to other locations on the Juan de Fuca Ridge and beyond. Sedimentation rates generally range from 0.5 to 3 cm/kyr, with background pelagic sedimentation rates close to 1 cm/kyr. Variability in sedimentation rates close to the ridge likely reflects remobilization of sediment caused by the high relief of the ridge bathymetry. Sedimentation patterns primarily reflect divergence of sedimentation rates with distance from the ridge axis and glacial-interglacial variation in sedimentation that may reflect carbonate preservation cycles as well as preferential remobilization of fine material.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_871940
institution PANGAEA
language en
publishDate 2017
publisher PANGAEA
record_format pangaea
spellingShingle (Table 2) Age determination from different sediment cores of the Juan de Fuca Ridge
Costa, K M
McManus, Jerry F
Boulahanis, B
Carbotte, S M
Winckler, Gisela
Huybers, Peter
Langmuir, Charles H
Age, 14C calibrated; Age, dated; Age, dated, standard deviation; Age, dated material; AT26-19; AT26-19-05PC; AT26-19-09PC; AT26-19-12PC; AT26-19-38PC; Atlantis (1997); Calendar age; Calendar age, standard deviation; DEPTH, sediment/rock; Event label; Juan de Fuca Ridge, North Pacific Ocean; Latitude of event; Longitude of event; PC; Piston corer; Sample ID; see further details
Sedimentation near mid-ocean ridges may differ from pelagic sedimentation due to the influence of the ridges' rough topography on sediment deposition and transport. This study explores whether the near-ridge environment responds to glacial-interglacial changes in climate and oceanography. New benthic d18O, radiocarbon, multi-sensor track, and physical property (sedimentation rates, density, magnetic susceptibility) data for seven cores on the Juan de Fuca Ridge provide multiple records covering the past 700,000 years of oceanographic history of the Northeast Pacific Ocean. Systematic variations in sediment density and coarse fraction correspond to glacial-interglacial cycles identified in benthic d18O, and these observations may provide a framework for mapping the d18O chronostratigraphy via sediment density to other locations on the Juan de Fuca Ridge and beyond. Sedimentation rates generally range from 0.5 to 3 cm/kyr, with background pelagic sedimentation rates close to 1 cm/kyr. Variability in sedimentation rates close to the ridge likely reflects remobilization of sediment caused by the high relief of the ridge bathymetry. Sedimentation patterns primarily reflect divergence of sedimentation rates with distance from the ridge axis and glacial-interglacial variation in sedimentation that may reflect carbonate preservation cycles as well as preferential remobilization of fine material.
title (Table 2) Age determination from different sediment cores of the Juan de Fuca Ridge
topic Age, 14C calibrated; Age, dated; Age, dated, standard deviation; Age, dated material; AT26-19; AT26-19-05PC; AT26-19-09PC; AT26-19-12PC; AT26-19-38PC; Atlantis (1997); Calendar age; Calendar age, standard deviation; DEPTH, sediment/rock; Event label; Juan de Fuca Ridge, North Pacific Ocean; Latitude of event; Longitude of event; PC; Piston corer; Sample ID; see further details
url https://doi.org/10.1594/PANGAEA.871940