Javascript must be enabled to continue!
Integrating Streambank Erosion with Overland and Ephemeral Gully Models Improves Stream Sediment Yield Simulation
View through CrossRef
HighlightsSimulation of overland (AnnAGNPS) and ephemeral gully (REGEM) erosion underestimated watershed sediment yield.Three methods were used to disaggregate contribution of streambank sediment loads to daily streamflow events.A rainfall-based method, with scaling factor and threshold term, had good performance and low bias in all watersheds.Calibrated model results indicated that most sediment yield was from streambank sources (78% to 93%).Abstract. Models used to guide watershed management must account for sediment from all erosion sources (interrill and rill, ephemeral gully (EG), and streambank), each of which operates at different spatial and temporal scales. Our hypothesis was that the use of separate models to explicitly simulate sediment yield contributions for each of these three sources would improve model agreement with measured watershed sediment yield data. We tested this hypothesis using AnnAGNPS (overland flow/erosion model), REGEM (EG erosion model), and field-measured streambank erosion disaggregated to an event basis using three methods in three watersheds (North Fork, Main Stem, and Irish Creek, Kansas). AnnAGNPS alone and in combination with REGEM underestimated sediment yields and had a poorly calibrated performance in all three watersheds, which reinforced the need to include sediment loads from stream sources. The three streambank sediment disaggregation methods each included two calibration terms: a scaling factor and a threshold term, which disaggregated 2-year-total streambank erosion measurements into event-based values based on rainfall, streamflow, or stream power. All three methods gave “very good” sediment-yield calibration results (event-based Ef = 0.6, PBIAS near 0%) for Main Stem and Irish Creek but gave “satisfactory” results only for the rainfall-based streambank disaggregation method in the evaluation watershed (North Fork). Calibrated model results indicated that most of the measured outlet sediment yields in the study watersheds were from streambank sources (78% to 93%), with less from overland erosion (7% to 22%) and little from EG erosion (0% to 7%). These methods could be equally effective in scaling and disaggregating stream-based sediment contributions without measured streambank erosion, but the calibration terms would lose physical meaning in reference to measured streambank values. The skill demonstrated by all three streambank disaggregation thresholds may provide a foundation for building simple, process-based streambank sediment yield simulation models. Keywords: Ephemeral gully erosion, Interrill and rill erosion, Modeling, Streambank erosion, Watershed.
American Society of Agricultural and Biological Engineers (ASABE)
Title: Integrating Streambank Erosion with Overland and Ephemeral Gully Models Improves Stream Sediment Yield Simulation
Description:
HighlightsSimulation of overland (AnnAGNPS) and ephemeral gully (REGEM) erosion underestimated watershed sediment yield.
Three methods were used to disaggregate contribution of streambank sediment loads to daily streamflow events.
A rainfall-based method, with scaling factor and threshold term, had good performance and low bias in all watersheds.
Calibrated model results indicated that most sediment yield was from streambank sources (78% to 93%).
Abstract.
Models used to guide watershed management must account for sediment from all erosion sources (interrill and rill, ephemeral gully (EG), and streambank), each of which operates at different spatial and temporal scales.
Our hypothesis was that the use of separate models to explicitly simulate sediment yield contributions for each of these three sources would improve model agreement with measured watershed sediment yield data.
We tested this hypothesis using AnnAGNPS (overland flow/erosion model), REGEM (EG erosion model), and field-measured streambank erosion disaggregated to an event basis using three methods in three watersheds (North Fork, Main Stem, and Irish Creek, Kansas).
AnnAGNPS alone and in combination with REGEM underestimated sediment yields and had a poorly calibrated performance in all three watersheds, which reinforced the need to include sediment loads from stream sources.
The three streambank sediment disaggregation methods each included two calibration terms: a scaling factor and a threshold term, which disaggregated 2-year-total streambank erosion measurements into event-based values based on rainfall, streamflow, or stream power.
All three methods gave “very good” sediment-yield calibration results (event-based Ef = 0.
6, PBIAS near 0%) for Main Stem and Irish Creek but gave “satisfactory” results only for the rainfall-based streambank disaggregation method in the evaluation watershed (North Fork).
Calibrated model results indicated that most of the measured outlet sediment yields in the study watersheds were from streambank sources (78% to 93%), with less from overland erosion (7% to 22%) and little from EG erosion (0% to 7%).
These methods could be equally effective in scaling and disaggregating stream-based sediment contributions without measured streambank erosion, but the calibration terms would lose physical meaning in reference to measured streambank values.
The skill demonstrated by all three streambank disaggregation thresholds may provide a foundation for building simple, process-based streambank sediment yield simulation models.
Keywords: Ephemeral gully erosion, Interrill and rill erosion, Modeling, Streambank erosion, Watershed.
Related Results
Quantification of Erosion Development Patterns Based on the Gully Headcut Erosion
Quantification of Erosion Development Patterns Based on the Gully Headcut Erosion
ABSTRACT
The study of mechanisms of gully headcut erosion is crucial for predicting and preventing soil erosion and effectively reducing gull...
A first data-driven gully head density map of the world
A first data-driven gully head density map of the world
<p>Gully erosion has been recognized as a main driver of soil erosion and land degradation. While numerous studies have focussed on understanding gully erosion at loc...
First gully probability map for Africa at 30m resolution
First gully probability map for Africa at 30m resolution
<p>Gully erosion is an important process of land degradation that threatens soil and water resources worldwide. However, our ability to simulate and predict this proc...
Process-oriented gully density modelling at the continental scale of Africa: first insights
Process-oriented gully density modelling at the continental scale of Africa: first insights
<p>Gully erosion is an important land degradation process, threatening soil and water resources worldwide. However, contrary to sheet and rill erosion, our ability to...
Diffused and localized sediment production processes in a distributed transport model
Diffused and localized sediment production processes in a distributed transport model
<p>The identification of preferential sediment production areas within a river basin is essential to improve predictions of sediment load and its sources, and to iden...
Impact of changing climate on thawing and snowmelt-driven gully erosion in Eastern Romania
Impact of changing climate on thawing and snowmelt-driven gully erosion in Eastern Romania
<p>Gully erosion has been recognized as an important environmental threat in the Moldavian Plateau of Eastern Romania. The main objective of this study was to better ...
Assessment of factors Influencing gully erosion for its remediation in Eastern Nigeria
Assessment of factors Influencing gully erosion for its remediation in Eastern Nigeria
Gully erosion is an easily observable footprint in the soil, and its factors have been studied using a piecemeal approach in Eastern Nigeria in the coverage of the region and the c...
An evaluation of analytical streambank flux methods and connections to end-member mixing models: a comparison of a new method and traditional methods
An evaluation of analytical streambank flux methods and connections to end-member mixing models: a comparison of a new method and traditional methods
Abstract. In this paper, a novel method for estimating gross gains and losses between streams and groundwater is developed and evaluated against two traditional approaches. These t...

