Combined sandstone petrography and heavy mineral analysis allow to decipher different sediment routing systems that could not be resolved by one method alone in the South Pyrenean foreland basin. We apply this approach to deltaic and alluvial deposits of the southern part of the Jaca basin, and in the time equivalent systems of the nearby Ainsa and Ebro basins, in order to unravel the evolution of source areas and the fluvial drainage from the Eocene to the Miocene. Our study allows the identification of four petrofacies and five heavy-mineral suites, which evidence the interplay of distinct routing systems, controlled by the emergence of tectonic structures. Two distinct axially-fed systems from the east coexisted in the fluvial Campodarbe...
International audienceWe investigated here the evolution of the sediment routing system, i.e. the se...
EGU2020: Sharing Geoscience Online, 4-8 may 2020During middle Eocene, the Escanilla fluvial system t...
The supply of sediment and its characteristic grain-size mix are key controls on depositional facies...
Combined sandstone petrography and heavy mineral analysis allow to decipher different sediment routi...
In the Jaca foreland basin (southern Pyrenees), two main sediment routing systems merge from the lat...
Late Cretaceous to Oligocene sedimentary fill of the Southern Pyrenean foreland basin consists of cl...
In the northern Jaca basin (Southern Pyrenees), the replacement of deep-marine by terrestrial enviro...
Foreland systems are regions where the complex interplay between deep and surface processes causes t...
The Early-Middle Eocene deep-marine siliciclastic systems of the Ainsa and Jaca foreland basins, Spa...
International audienceAlluvial fans are the main geomorphological and depositional features at activ...
This paper is included in the Special Publication entitled 'Cenozoic foreland basins of Western Euro...
Sedimentological investigations of the Eocene Monllobat and adjacent Castigaleu Formations in the So...
Two Palaeogene fluvial fan systems linked to the south-Pyrenean margin are recognized in the eastern...
The Pyrenees represents an orogen that developed diachronously, from east to west, between the Late ...
During the Paleogene and Neogene the NE Iberian plate underwent significant paleogeographic changes ...
International audienceWe investigated here the evolution of the sediment routing system, i.e. the se...
EGU2020: Sharing Geoscience Online, 4-8 may 2020During middle Eocene, the Escanilla fluvial system t...
The supply of sediment and its characteristic grain-size mix are key controls on depositional facies...
Combined sandstone petrography and heavy mineral analysis allow to decipher different sediment routi...
In the Jaca foreland basin (southern Pyrenees), two main sediment routing systems merge from the lat...
Late Cretaceous to Oligocene sedimentary fill of the Southern Pyrenean foreland basin consists of cl...
In the northern Jaca basin (Southern Pyrenees), the replacement of deep-marine by terrestrial enviro...
Foreland systems are regions where the complex interplay between deep and surface processes causes t...
The Early-Middle Eocene deep-marine siliciclastic systems of the Ainsa and Jaca foreland basins, Spa...
International audienceAlluvial fans are the main geomorphological and depositional features at activ...
This paper is included in the Special Publication entitled 'Cenozoic foreland basins of Western Euro...
Sedimentological investigations of the Eocene Monllobat and adjacent Castigaleu Formations in the So...
Two Palaeogene fluvial fan systems linked to the south-Pyrenean margin are recognized in the eastern...
The Pyrenees represents an orogen that developed diachronously, from east to west, between the Late ...
During the Paleogene and Neogene the NE Iberian plate underwent significant paleogeographic changes ...
International audienceWe investigated here the evolution of the sediment routing system, i.e. the se...
EGU2020: Sharing Geoscience Online, 4-8 may 2020During middle Eocene, the Escanilla fluvial system t...
The supply of sediment and its characteristic grain-size mix are key controls on depositional facies...