Related Experiment Video
Updated: Feb 15, 2026

Laboratory-determined Phosphorus Flux from Lake Sediments as a Measure of Internal Phosphorus Loading
Published on: March 6, 2014
Link between concentrations of sediment flux and deep crustal processes beneath the European Alps
Philippos Garefalakis1, Fritz Schlunegger2
1University of Bern, Institute of Geological Sciences, Baltzerstrasse 1+3, CH-3001, Bern, Switzerland. philippos.garefalakis@students.unibe.ch.
Abstract:
Large sediment fluxes from mountain belts have the potential to cause megafans to prograde into the neighbouring sedimentary basins. These mechanisms have been documented based from numerical modelling and stratigraphic records. However, little attention has been focused on inferring temporal changes in the concentrations of supplied sediment from coarse-grained deposits. Here, we extract changes of this variable in the field from a Late Oligocene, c. 4 km-thick suite of fluvial conglomerates situated in the North Alpine foreland basin, which evolved in response to the tectonic and erosional history of the Alps. We measure a decrease in channel depths from >2 m to <1 m and an increase in the largest grain sizes from <15 cm to >20 cm from the base to the top of the suite. These constraints are used to calculate an increase in fan surface slopes from <0.3° to >1.0° based on the Shields criteria for sediment entrainment. We combine slope and bulk grain size data with the Bagnold equation for sediment transport to infer higher concentrations of the supplied sediment. We use these shifts to propose a change towards faster erosion and a steeper landscape in the Alpine hinterland, driven by mantle-scale processes beneath the Alps.
Related Concept Videos
Covalently Linked Protein Regulators
These groups modify specific amino acids in a protein....
Electric Flux
X-linked Traits
Concentration Cells
Consider the following voltaic cell:
Magnetic Flux
Suppose a surface is divided into elements of area dA. For each element, the component of the magnetic field that is normal to the...
Solution Concentration and Dilution

