Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

The sedimentary dynamics of active fluvial channels on the Okavango fan, Botswana

Domaine:

environment and energygeospatial
Créateur:
T.SI.GB.
Éditeur:
WILEY
Hôte:
ABSTRACT The 1800‐km 2 Okavango alluvial fan of northern Botswana represents an unusual depositional setting in which peat‐forming perennial swamps (6000 km 2 ) occur in a region of aeolian and semi‐arid sedimentation within an incipient graben of the East African Rift. A channel system distributes water and sediment on the fan surface but cannot contain seasonal flood water, which spreads laterally from the channels through permeable channel margins, sustaining the flanking swamps. All sediment introduced is deposited on the fan. A detailed study of sediment movement and associated hydrological conditions in the channels was undertaken to examine sediment dispersal. Bedload greatly exceeds suspended load (at least by a factor of four). Vegetation and peat form permeable levees which confine the channels. In the upper reaches, two‐way exchange of water occurs between channel and swamp depending on the season, but on the fan itself, channels lose water to the swamp. Bedload measurements reveal that the channel system is in a state of grade disequilibrium, with interspersed depositional and erosional reaches. Deposition of most of the incoming bedload occurs on the upper portion of the fan in a meandering and anastomosed channel system, but on the midfan, deposition of bedload occurs by channel‐bed aggradation, at a rate of up to 5 cm yr –1 . Further down slope, the channel enters a large lake where all remaining bedload is deposited. The presently observed sedimentation patterns may be due to a recent disturbance of the fluvial system, either by avulsion or neotectonics.

Visit

doi.org

Licenses

http://onlinelibrary.wiley.com/termsAndConditions#vor

Similaires

Sedimentation on the distal reaches of the Okavango Fan, Botswana, and its bearing on calcrete and silcrete (ganister) formationA nested hierarchical perspective to enhance interpretations and communication in fluvial geomorphology for use in water resources management: Lessons from the Okavango Delta, BotswanaA regional coupled surface water/groundwater model of the Okavango Delta, BotswanaANALYSING EFFECTS OF DROUGHT ON INUNDATION EXTENT AND VEGETATION COVER DYNAMICS IN THE OKAVANGO DELTAUnraveling Tectonic From Hydrological Subsidence Of The Okavango Graben (Botswana) Using FLATSIM InSAR Data.A Hybrid Stochastic-ANN Approach for Flow Partitioning in the Okavango Delta of Botswana

Sedimentation on the distal reaches of the Okavango Fan, Botswana, and its bearing on calcrete and silcrete (ganister) formation

Abstract The distal reaches or flood plain of the Okavango alluvial fan of north

A nested hierarchical perspective to enhance interpretations and communication in fluvial geomorphology for use in water resources management: Lessons from the Okavango Delta, Botswana

A key skill that geomorphologists possess is the ability to use multi‐scale perspectives in their in

A regional coupled surface water/groundwater model of the Okavango Delta, Botswana

In the endorheic Okavango River system in southern Africa a balance between human and environmental

ANALYSING EFFECTS OF DROUGHT ON INUNDATION EXTENT AND VEGETATION COVER DYNAMICS IN THE OKAVANGO DELTA

The impacts of global change especially the recent climate-related extremes such as floods and droug

Unraveling Tectonic From Hydrological Subsidence Of The Okavango Graben (Botswana) Using FLATSIM InSAR Data.

International audience Located at the southwestern terminus of the East African Rift

A Hybrid Stochastic-ANN Approach for Flow Partitioning in the Okavango Delta of Botswana

Since a spectrum of hydrological and geomorphological conditions produce flood pulse enviro