Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian accretionary wedge (NW Italy) and relationships with tectonics, global climate change and the dissociation of gas hydrates

Por um escritor misterioso
Last updated 20 setembro 2024
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
PDF] Redefinition of the Ligurian Units at the Alps–Apennines junction (NW Italy) and their role in the evolution of the Ligurian accretionary wedge: constraints from mélanges and broken formations
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
PDF] Structural anatomy of the Ligurian accretionary wedge (Monferrato, NW Italy), and evolution of superposed mélanges
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
PDF) Tectonic and climatic control on deposition of seep-carbonates: The case of middle-late miocene salsomaggiore ridge (Northern Apennines, Italy)
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Multistage tectono-stratigraphic evolution of the Canavese Intracontinental Suture Zone: New constraints on the tectonics of the Inner Western Alps - ScienceDirect
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
PDF) Structural Setting of Western Monferrato (Alps-Apennines Junction Zone, NW Italy)
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Field occurrence of the Epiligurian Succession (a-h) and
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Geosciences, Free Full-Text
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Basal shear zones of recurrent mass transport deposits serve as potential reservoirs for gas hydrates in the Central Canyon area, South China Sea - ScienceDirect
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Narrow parallel-sided cracks in matrix suggesting either or both
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian accretionary wedge (NW Italy) and relationships with tectonics, global climate change and the dissociation of gas hydrates
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Redefinition of the Ligurian Units at the Alps–Apennines junction (NW Italy) and their role in the evolution of the Ligurian accretionary wedge: constraints from mélanges and broken formations
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
Simplified geological map of the Albanide – Hellenide mountain belt
Mid-Eocene giant slope failure (sedimentary mélanges) in the Ligurian  accretionary wedge (NW Italy) and relationships with tectonics, global  climate change and the dissociation of gas hydrates
PDF] Redefinition of the Ligurian Units at the Alps–Apennines junction (NW Italy) and their role in the evolution of the Ligurian accretionary wedge: constraints from mélanges and broken formations

© 2014-2024 botanica-hq.com. All rights reserved.