Javascript must be enabled to continue!
The significance of Benthic Foraminiferal Deep-Sea Drilling data in the Cretaceous Austral Realm
View through CrossRef
Benthic foraminiferal studies from the Cretaceous of Australia provide critical insights into paleoenvironmental and biostratigraphic correlations across the Southern Hemisphere. This study contextualizes data from International Ocean Discovery Programme (IODP) Sites U1512, U1513, U1514 and U1516 , and significant data from other sources. We present the significance of calcareous and agglutinated benthic foraminiferal data for our understanding of palaeoenvironmental dynamics in the mid- to Upper Cretaceous sediments of the southern hemisphere, relying on complementary data from planktonic foraminifera as well as calcareous nannofossils. In the Albian, the benthic foraminiferal record at Site U1513 illustrates transitions from neritic to upper bathyal environments, initially marked by the dominance of agglutinated taxa such as Ammodiscus and Haplophragmoides. The shift to calcareous benthic foraminifera, including the markers Gavelinella intermedia and Osangularia schloenbachi, reflects increasing marine influence. These assemblages correlate with records from the Kerguelen Plateau, the Great Artesian Basin, and South America, providing a coherent framework for Southern Hemisphere biostratigraphy during the Albian.The Cenomanian-Turonian interval captures the impact of Oceanic Anoxic Event 2 (OAE 2). At Sites U1513, U1516, and U1512, a reduced diversity in calcareous benthic foraminifera and the increased dominance of agglutinated taxa highlights the environmental stress linked to dysoxic conditions. These changes are mirrored across the Southern Hemisphere, with parallels in South Africa and Walvis Ridge.The Coniacian and Santonian successions at Site U1513 document stable bathyal environments dominated by calcareous benthic taxa such as Gavelinella berthelini and Notoplanulina rakauroana. These assemblages exhibit remarkable correlations with other Southern Hemisphere records, including the Falkland Plateau and New Zealand. This synthesis underscores the significance of calcareous and agglutinated benthic foraminifera for correlations through the Southern Hemisphere and helps to improve our understanding of the interplay between local and global paleoenvironmental dynamics, and oceanographic and climatic developments during the Cretaceous. 
Copernicus GmbH
Title: The significance of Benthic Foraminiferal Deep-Sea Drilling data in the Cretaceous Austral Realm
Description:
Benthic foraminiferal studies from the Cretaceous of Australia provide critical insights into paleoenvironmental and biostratigraphic correlations across the Southern Hemisphere.
This study contextualizes data from International Ocean Discovery Programme (IODP) Sites U1512, U1513, U1514 and U1516 , and significant data from other sources.
We present the significance of calcareous and agglutinated benthic foraminiferal data for our understanding of palaeoenvironmental dynamics in the mid- to Upper Cretaceous sediments of the southern hemisphere, relying on complementary data from planktonic foraminifera as well as calcareous nannofossils.
In the Albian, the benthic foraminiferal record at Site U1513 illustrates transitions from neritic to upper bathyal environments, initially marked by the dominance of agglutinated taxa such as Ammodiscus and Haplophragmoides.
The shift to calcareous benthic foraminifera, including the markers Gavelinella intermedia and Osangularia schloenbachi, reflects increasing marine influence.
These assemblages correlate with records from the Kerguelen Plateau, the Great Artesian Basin, and South America, providing a coherent framework for Southern Hemisphere biostratigraphy during the Albian.
The Cenomanian-Turonian interval captures the impact of Oceanic Anoxic Event 2 (OAE 2).
At Sites U1513, U1516, and U1512, a reduced diversity in calcareous benthic foraminifera and the increased dominance of agglutinated taxa highlights the environmental stress linked to dysoxic conditions.
These changes are mirrored across the Southern Hemisphere, with parallels in South Africa and Walvis Ridge.
The Coniacian and Santonian successions at Site U1513 document stable bathyal environments dominated by calcareous benthic taxa such as Gavelinella berthelini and Notoplanulina rakauroana.
These assemblages exhibit remarkable correlations with other Southern Hemisphere records, including the Falkland Plateau and New Zealand.
This synthesis underscores the significance of calcareous and agglutinated benthic foraminifera for correlations through the Southern Hemisphere and helps to improve our understanding of the interplay between local and global paleoenvironmental dynamics, and oceanographic and climatic developments during the Cretaceous.
 .
Related Results
Austral 1938-1944: lo individual y lo colectivo
Austral 1938-1944: lo individual y lo colectivo
The Austral group was an architectural society founded in Buenos Aires towards the end of the year 1938. It originated as a result of a meeting that took place in París ayear earli...
Benthic foraminifera associated to cold-water coral ecosystems
Benthic foraminifera associated to cold-water coral ecosystems
Cold-water coral reef ecosystems occur worldwide and are especially developed along the European margin, from northern Norway to the Gulf of Cadiz and into the Western Mediterranea...
Benthic foraminiferal assemblage changes during OAE 2 in the southern high latitudes - IODP Site U1516, Indian Ocean
Benthic foraminiferal assemblage changes during OAE 2 in the southern high latitudes - IODP Site U1516, Indian Ocean
At Site U1516 (Mentelle Basin, southeast Indian Ocean, offshore western Australia), the International Ocean Discovery Program (IODP) Expedition 369 recovered an almost complete rec...
Campanian‐Maastrichtian intermediate‐ to deep‐water changes in the high latitudes: Benthic foraminiferal evidence
Campanian‐Maastrichtian intermediate‐ to deep‐water changes in the high latitudes: Benthic foraminiferal evidence
During the latest Cretaceous cooling phase, a positive shift in benthic foraminiferal δ18O values lasting about 1.5 Myr (71.5–70 Ma) can be observed at a global scale (Campanian‐Ma...
The Upper Cretaceous foraminiferal record of IODP Site U1512 (Great Australian Bight, Indian Ocean)
The Upper Cretaceous foraminiferal record of IODP Site U1512 (Great Australian Bight, Indian Ocean)
<p>Site U1512 was drilled during Expedition 369 of the International Ocean Discovery Program (IODP), which is located in the Great Australian Bight, southern Indian O...
Inspection of Subsea Conductors Using an Innovative Drop-Down Camera
Inspection of Subsea Conductors Using an Innovative Drop-Down Camera
Abstract
Subsea conductors are the foundational elements of offshore drilling operations, serving a dual purpose as both the structural framework and the main condui...
Experimental Investigation of Permeability and Fluid Loss Properties of Water Based Mud Under High Pressure-High Temperature Conditions
Experimental Investigation of Permeability and Fluid Loss Properties of Water Based Mud Under High Pressure-High Temperature Conditions
Drilling in deeper formations and in high pressure and high temperature (HPHT) environments is a new frontier for the oil industry. Fifty years ago, no one would have imagined dril...
Drilling Variables At Technical Limit Of Drilling Rate
Drilling Variables At Technical Limit Of Drilling Rate
Abstract
Recorded drilling times may show significant variations from well to well even for the same total depth in the same field. Apart from the formation chara...

