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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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North Africa
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Morocco
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Rif (1)
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Atlantic Ocean
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North Atlantic
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Gulf of Cadiz (29)
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Gulf of Mexico (1)
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Northeast Atlantic (2)
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Australasia
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New Zealand (1)
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Canterbury Basin (1)
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Caribbean region
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Antilles
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Martinique (1)
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Eurasia (1)
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Europe
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Southern Europe
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Iberian Peninsula
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Portugal (5)
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Spain
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Western Europe
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United Kingdom
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Great Britain
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England
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Indian Ocean
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Mediterranean Sea
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Pacific Ocean
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East Pacific
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commodities
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elements, isotopes
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carbon
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isotope ratios (2)
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isotopes
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metals
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oxygen
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fossils
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geologic age
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Primary terms
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Africa
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North Africa
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Morocco
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Atlantic Ocean
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Cenozoic
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Quaternary
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Holocene
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upper Holocene
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Roman period (1)
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Pleistocene
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upper Pleistocene (1)
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upper Quaternary (2)
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Tertiary
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Neogene
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Miocene
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upper Miocene
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Messinian
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Messinian Salinity Crisis (1)
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Deep Sea Drilling Project
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Western Europe
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Integrated Ocean Drilling Program
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Invertebrata
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Protista
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isotopes
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maps (1)
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Mediterranean Sea
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Mesozoic
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Cretaceous (1)
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Lower Jurassic (1)
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Triassic
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metals
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Sr-87/Sr-86 (2)
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oxygen
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Pacific Ocean
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North Pacific
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Northeast Pacific
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Guatemala Basin (1)
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West Pacific
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Southwest Pacific (1)
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paleoclimatology (3)
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bioturbation (1)
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sediments
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contourite (2)
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sediments
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clastic sediments
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drift (1)
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marine sediments (9)
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turbidite (3)
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Gulf of Cadiz
A Major Earthquake and Tsunami in the Gulf of Cadiz in the Sixth Century B.C.? A Review of the Historical, Archaeological, and Geological Evidence
Episodic postglacial deltaic pulses in the Gulf of Cadiz: Implications for the development of a transgressive shelf and driving environmental conditions
The genus Sveltia (Gastropoda, Cancellariidae) in the Atlantic Pliocene of Iberia with a new species from the Cenozoic Mondego Basin of Portugal
Oceanic strike-slip faults represent active fluid conduits in the abyssal sub-seafloor
Workflow model for the digitization of mudrocks
Abstract Mudrocks are highly heterogeneous in a range of physical and chemical properties, including: porosity and permeability, fissility, colour, particle composition, size, orientation, carbon loading, degree of compaction, and diagenetic overprint. It is therefore important that the maximum information be extracted as efficiently and completely as possible. This can be accomplished through high-resolution analysis of polished thin sections by scanning electron microscopy (SEM), with the collection of large-area images and X-ray elemental map montages, and the application of targeted particle analysis. A workflow model, based on these techniques, for the digitization of mudrocks is presented herein. A range of the data that can be collected and the variety of analyses that can be achieved are also illustrated. Data collection is discussed in terms of inherent problems with acquisition, storage, transfer and manipulation, which can be time-consuming and non-trivial. Similar information and resolutions can be achieved through other techniques, such as QEMSCAN and infra-red (IR)/Raman spectroscopic mapping. These can be seen as complementary to the workflow described herein.
Abstract The development of overpressure in continental margins is typically evaluated with hydrogeological models. Such approaches are used to both identify fluid flow patterns and to evaluate the development of high pore pressures within layers with particular physical properties that may promote slope instability. In some instances, these models are defined with sediment properties based on facies characterization and proxy values of porosity; permeability or compressibility are derived from the existing literature as direct measurements are rarely available. This study uses finite-element models to quantify the differences in computed overpressure generated by fine-grained hemipelagic sediments from the Gulf of Cadiz, offshore Martinique and the Gulf of Mexico, and their consequences in terms of submarine slope stability. By comparing our simulation results with in situ pore pressure data measured in the Gulf of Mexico, we demonstrate that physical properties measured on volcanic-influenced hemipelagic sediments underestimate the computed stability of a submarine slope. Physical properties measured on sediments from the study area are key to improving the reliability and accuracy of overpressure models, and when that information is unavailable, literature data from samples with similar lithologies, composition and depositional settings enable better assessment of the overpressure role as a pre-conditioning factor in submarine landslide initiation.