À partir de Cᵉ siècle av. J.-C.
Egypt and the Nile valley
Traduction non disponible · Original (anglais) · français indisponible
The Nile Valley Palaeoclimatic Sequence is a geological and archaeological framework describing successive river systems and climatic phases in Egypt from the upper Miocene onward. It distinguishes the Eo-Nile, Paleo-Nile, Proto-Nile, Pre-Nile, and Neo-Nile, linking their sediments and channels to alternating humid, hyperarid, and subpluvial conditions. The sequence also associates several phases with stone-tool traditions, including Chellean, late Acheulian, Sangoan-Lupemban, Mousterian, Aterian, and Neolithic assemblages.
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Le récit
The extract reconstructs the geological history of the Nile as a succession of five principal river systems. These are named the Eo-Nile, Paleo-Nile, Proto-Nile, Pre-Nile, and Neo-Nile, with each episode drawing much of its water from sources outside Egypt except during a short early pluvial phase when ephemeral torrents were confined to Egyptian drainage.
The Paleo-Nile belonged to a Pliocene pluvial environment extending from approximately 3.32 to 1.85 million years ago. Its fine-grained sediments and clays occur beneath and along the Nile valley, while its sources lay in Egypt and in equatorial and sub-equatorial Africa. Vegetation was extensive, chemical weathering was intensive, and runoff was comparatively reduced.
A lower Pleistocene hyperarid phase then transformed Egypt into a desert and intensified wind action. A brief Armant pluvial interrupted this aridity, producing alternating gravel, sand, and marl beds. Later, the Idfu pluvial saw the Proto-Nile return with comparable climatic conditions, while the Pre-Nile derived water from the Ethiopian highlands and deposited minerals characteristic of those sources.
The Nile sequence includes several named humid and arid phases. The Abbassia pluvial, dated to 125,000–80,000 years ago, contains abundant late Acheulian tools in gravels derived from the Egyptian Red Sea hills. It was followed by the Abbassia/Makhadma arid phase and then the Makhadma subpluvial, associated with Sangoan-Lupemban implements and, in surrounding deserts, Mousterian and later Aterian traditions.
The Neo-Nile arid phase began approximately 27,000 years ago and continues to the present in the framework presented here. Within it, the extract identifies the Deir el Fakhuri subpluvial at 15,000–12,000 years ago, the Dishna subpluvial at 10,000–9,200 years ago, and a Neolithic humid phase at 7,000–6,000 years ago. These intervals represent fluctuations in the river’s flow and surrounding climate rather than a single uninterrupted environmental condition.
Pliocene pluvial and Paleo-Nile
Lower Pleistocene hyperarid phase
Idfu pluvial and Proto-Nile
Pre-Nile arid phase
Abbassia pluvial
Abbassia/Makhadma arid phase
Makhadma subpluvial
Neo-Nile arid phase and later subpluvials
À partir de Cᵉ siècle av. J.-C.
Egypt and the Nile valley
Traduction non disponible · Original (anglais) · français indisponible
The Nile Valley Palaeoclimatic Sequence is a geological and archaeological framework describing successive river systems and climatic phases in Egypt from the upper Miocene onward. It distinguishes the Eo-Nile, Paleo-Nile, Proto-Nile, Pre-Nile, and Neo-Nile, linking their sediments and channels to alternating humid, hyperarid, and subpluvial conditions. The sequence also associates several phases with stone-tool traditions, including Chellean, late Acheulian, Sangoan-Lupemban, Mousterian, Aterian, and Neolithic assemblages.
Poursuivre l’exploration
Le récit
The extract reconstructs the geological history of the Nile as a succession of five principal river systems. These are named the Eo-Nile, Paleo-Nile, Proto-Nile, Pre-Nile, and Neo-Nile, with each episode drawing much of its water from sources outside Egypt except during a short early pluvial phase when ephemeral torrents were confined to Egyptian drainage.
The Paleo-Nile belonged to a Pliocene pluvial environment extending from approximately 3.32 to 1.85 million years ago. Its fine-grained sediments and clays occur beneath and along the Nile valley, while its sources lay in Egypt and in equatorial and sub-equatorial Africa. Vegetation was extensive, chemical weathering was intensive, and runoff was comparatively reduced.
A lower Pleistocene hyperarid phase then transformed Egypt into a desert and intensified wind action. A brief Armant pluvial interrupted this aridity, producing alternating gravel, sand, and marl beds. Later, the Idfu pluvial saw the Proto-Nile return with comparable climatic conditions, while the Pre-Nile derived water from the Ethiopian highlands and deposited minerals characteristic of those sources.
The Nile sequence includes several named humid and arid phases. The Abbassia pluvial, dated to 125,000–80,000 years ago, contains abundant late Acheulian tools in gravels derived from the Egyptian Red Sea hills. It was followed by the Abbassia/Makhadma arid phase and then the Makhadma subpluvial, associated with Sangoan-Lupemban implements and, in surrounding deserts, Mousterian and later Aterian traditions.
The Neo-Nile arid phase began approximately 27,000 years ago and continues to the present in the framework presented here. Within it, the extract identifies the Deir el Fakhuri subpluvial at 15,000–12,000 years ago, the Dishna subpluvial at 10,000–9,200 years ago, and a Neolithic humid phase at 7,000–6,000 years ago. These intervals represent fluctuations in the river’s flow and surrounding climate rather than a single uninterrupted environmental condition.
Pliocene pluvial and Paleo-Nile
Lower Pleistocene hyperarid phase
Idfu pluvial and Proto-Nile
Pre-Nile arid phase
Abbassia pluvial
Abbassia/Makhadma arid phase
Makhadma subpluvial
Neo-Nile arid phase and later subpluvials
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