Javascript must be enabled to continue!
Spatial Trends and Drivers of Bedload and Suspended Sediment Fluxes in Global Rivers
View through CrossRef
Bedload flux is notoriously challenging to measure and model. The
dynamics of bedload therefore remains largely unknown in most fluvial
systems worldwide. We present a global scale bedload flux model as part
of the WBMsed modeling framework. Our results show that the model can
very well predict the distribution of water discharge and suspended
sediment and well predict bedload. We analyze the model’s bedload
predictions sensitivity to river slope, particle size, discharge, river
width and suspended sediment. We found that the model is most responsive
to spatial dynamics in river discharge and slope. We analyze the
relationship between bedload and total sediment flux globally and in
representative longitudinal river profiles (Amazon, Mississippi, and
Lena Rivers). We show that while, as expected, the proportion of bedload
is decreasing from headwater to the coasts, there is considerable
variability between basins and along river corridors. The latter is
largely responsive to changes in suspended sediment and river slope due
to dams and reservoirs. We provide a new estimate of water and sediment
fluxes to global oceans from 2,067 largest river outlets (draining 67%
of the global continental mass). Estimated water discharge (30,579
km3/y) corresponds well to past estimates however sediment flux is
considerably higher. Of the total 22 Gt/y estimated average sediment
flux to global oceans, 19 Gt/y is transported as washload, 1 Gt/y as
bedload, and 2 Gt/y as suspended bed material. The largest 25 rivers are
predicted to transport over 55% of total sediment flux to global
oceans.
Title: Spatial Trends and Drivers of Bedload and Suspended Sediment Fluxes in Global Rivers
Description:
Bedload flux is notoriously challenging to measure and model.
The
dynamics of bedload therefore remains largely unknown in most fluvial
systems worldwide.
We present a global scale bedload flux model as part
of the WBMsed modeling framework.
Our results show that the model can
very well predict the distribution of water discharge and suspended
sediment and well predict bedload.
We analyze the model’s bedload
predictions sensitivity to river slope, particle size, discharge, river
width and suspended sediment.
We found that the model is most responsive
to spatial dynamics in river discharge and slope.
We analyze the
relationship between bedload and total sediment flux globally and in
representative longitudinal river profiles (Amazon, Mississippi, and
Lena Rivers).
We show that while, as expected, the proportion of bedload
is decreasing from headwater to the coasts, there is considerable
variability between basins and along river corridors.
The latter is
largely responsive to changes in suspended sediment and river slope due
to dams and reservoirs.
We provide a new estimate of water and sediment
fluxes to global oceans from 2,067 largest river outlets (draining 67%
of the global continental mass).
Estimated water discharge (30,579
km3/y) corresponds well to past estimates however sediment flux is
considerably higher.
Of the total 22 Gt/y estimated average sediment
flux to global oceans, 19 Gt/y is transported as washload, 1 Gt/y as
bedload, and 2 Gt/y as suspended bed material.
The largest 25 rivers are
predicted to transport over 55% of total sediment flux to global
oceans.
Related Results
Trends and Drivers of Bedload and Suspended Sediment Fluxes in Global Rivers
Trends and Drivers of Bedload and Suspended Sediment Fluxes in Global Rivers
<p>Bedload flux is notoriously challenging to measure and model. The dynamics of bedload, therefore, remains largely unknown in most fluvial systems worldwide. We pre...
Spatial Trends and Drivers of Bedload and Suspended Sediment Fluxes in Global Rivers
Spatial Trends and Drivers of Bedload and Suspended Sediment Fluxes in Global Rivers
Abstract
Bedload is notoriously challenging to measure and model; its dynamics, therefore, remains largely unknown in most fluvial systems wo...
The impact of snow line altitude on subglacial sediment export
The impact of snow line altitude on subglacial sediment export
Large Alpine glaciers typically export significant quantities of subglacially eroded sediment to their downstream environments via meltwater streams. The supply of this glaciogenic...
Hydrological drivers of bedload transport in an Alpine watershed
Hydrological drivers of bedload transport in an Alpine watershed
<p>Understanding and predicting bedload transport is an important element of watershed management. Yet, predictions of bedload remain uncertain by up to several order...
Hydrological drivers of bedload transport in an Alpine watershed
Hydrological drivers of bedload transport in an Alpine watershed
Understanding and predicting bedload transport is an important element
of watershed management. Yet, predictions of bedload remain uncertain up
to several order(s) of magnitude. In...
Quantitative measurement of bedload transport variability with acoustic monitoring systems: Insight from controlled laboratory flume experiments
Quantitative measurement of bedload transport variability with acoustic monitoring systems: Insight from controlled laboratory flume experiments
Predicting bedload transport is a key element of water-related hazard assessment and hydraulic engineering applications. However, knowledge of bedload transport processes remains l...
ADCP measurements of bedload due to hydropeaking versus natural floods
ADCP measurements of bedload due to hydropeaking versus natural floods
A hydropeak is a rapid increase in river discharge induced by a hydroelectric dam when optimizing energy production.  These flow fluctuations occur in many regulated river...
Rapid shredding of the subglacial sediment export signal by proglacial forefields
Rapid shredding of the subglacial sediment export signal by proglacial forefields
Alpine glaciers have been rapidly retreating and at increasing rates in recent decades due to climate warming. As a consequence, large amounts of suspended- and bed-load flux are b...

