Related Experiment Video
Updated: Jan 20, 2026

Using Generative Art to Convey Past and Future Climate Transitions
Published on: March 31, 2023
River channel conveyance capacity adjusts to modes of climate variability
L J Slater1, A Khouakhi2, R L Wilby3
1School of Geography and the Environment, University of Oxford, Oxford, UK. louise.slater@ouce.ox.ac.uk.
Abstract:
River networks are typically treated as conduits of fixed discharge conveyance capacity in flood models and engineering design, despite knowledge that alluvial channel networks adjust their geometry, conveyance, planform, extent and drainage density over time in response to shifts in the magnitude and frequency of streamflows and sediment supply. Consistent relationships between modes of climate variability conducive to wetter-/drier-than-average conditions and changes in channel conveyance have never been established, hindering geomorphological prediction over interannual to multidecadal timescales. This paper explores the relationship between river channel conveyance/geometry and three modes of climate variability (the El Niño-Southern Oscillation, Atlantic Multidecadal Oscillation, and Arctic Oscillation) using two-, five- and ten-year medians of channel measurements, streamflow, precipitation and climate indices over seven decades in 67 United States rivers. We find that in two thirds of these rivers, channel capacity undergoes coherent phases of expansion/contraction in response to shifts in catchment precipitation and streamflow, driven by climate modes with different periodicities. Understanding the sensitivity of channel conveyance to climate modes would enable better river management, engineering design, and flood predictability over interannual to multidecadal timescales.
Related Concept Videos
06:10Using Generative Art to Convey Past and Future Climate Transitions
Climate Change
Climate Change
ExpandNOTE: This activity is a simulation of land- and sea-ice melting and their effects on water levels.
First, label one graduated cylinder as 'Sea Ice' and the other graduated cylinder as 'Land Ice.' Hypotheses: the experimental hypothesis might be that the land ice melting will cause the water level to rise more than the melting sea ice. The null hypothesis would be that there will be no difference in the change in water level between the two containers.
Add 10 ice...
Global Climate Change
Lung Capacity
10:44Clean Sampling and Analysis of River and Estuarine Waters for Trace Metal Studies