Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Influence of Internal Erosion on Rainfall-Induced Instability of Layered Deposited-Soil Slopes

View through CrossRef
Layered deposited-soil slopes are widely distributed in mountainous terrain. The rainfall-induced instability of layered deposited-soil slopes is not only controlled by the unsaturated infiltration process but also by the seepage-induced internal-erosion process within the deposited soils. In this paper, the main physical processes within two-layer deposited-soil slopes under rainfall infiltration are summarized, and a coupled seepage–erosion finite element model is established to analyze the interactions between the rainfall infiltration process and the internal-erosion process within layered deposited-soil slopes. This finite element model was validated by simulating the coupled seepage–erosion process in a one-dimensional layered soil column. Then, serials of two-dimensional coupled seepage–erosion simulations were conducted to investigate the rainfall-induced seepage–erosion patterns, as well as their impact on the stability evolution of the layered deposited slopes. It was shown that the rainfall-induced seepage–erosion accelerate the water infiltration into the slope and facilitate the generation of subsurface stormflow near the layer interface, which will weaken the soils around the layer interface and accelerate the slope failure process inevitably. Special attention should be paid to the rainfall-induced seepage–erosion effect when evaluating the stability of layered deposited-soil slopes.
Title: Influence of Internal Erosion on Rainfall-Induced Instability of Layered Deposited-Soil Slopes
Description:
Layered deposited-soil slopes are widely distributed in mountainous terrain.
The rainfall-induced instability of layered deposited-soil slopes is not only controlled by the unsaturated infiltration process but also by the seepage-induced internal-erosion process within the deposited soils.
In this paper, the main physical processes within two-layer deposited-soil slopes under rainfall infiltration are summarized, and a coupled seepage–erosion finite element model is established to analyze the interactions between the rainfall infiltration process and the internal-erosion process within layered deposited-soil slopes.
This finite element model was validated by simulating the coupled seepage–erosion process in a one-dimensional layered soil column.
Then, serials of two-dimensional coupled seepage–erosion simulations were conducted to investigate the rainfall-induced seepage–erosion patterns, as well as their impact on the stability evolution of the layered deposited slopes.
It was shown that the rainfall-induced seepage–erosion accelerate the water infiltration into the slope and facilitate the generation of subsurface stormflow near the layer interface, which will weaken the soils around the layer interface and accelerate the slope failure process inevitably.
Special attention should be paid to the rainfall-induced seepage–erosion effect when evaluating the stability of layered deposited-soil slopes.

Related Results

Effects of rock outcrops on runoff and erosion from karst slopes under simulated rainfall
Effects of rock outcrops on runoff and erosion from karst slopes under simulated rainfall
AbstractRock outcrops play a crucial role in affecting hydrological and erosion processes on karst hillslopes. However, due to various difficulties in constructing runoff plots on ...
Extent of Cropland and Related Soil Erosion Risk in Rwanda
Extent of Cropland and Related Soil Erosion Risk in Rwanda
Land conversion to cropland is one of the major causes of severe soil erosion in Africa. This study assesses the current cropland extent and the related soil erosion risk in Rwanda...
Two-dimensional hydrodynamic robust numerical model of soil erosion based on slopes and river basins
Two-dimensional hydrodynamic robust numerical model of soil erosion based on slopes and river basins
<div> <div> <div> <p>Erosion is an important issue in soil science and is related to many environmental problems, such as so...
Analysis of heavy-rainfall-induced fast soil erosion: examples the NE Abruzzo clayey hills (Central Italy)
Analysis of heavy-rainfall-induced fast soil erosion: examples the NE Abruzzo clayey hills (Central Italy)
<p>Soil erosion induced by heavy rainfall deeply affects landscape changes and human activities. It depends on rainfall distribution (e.g., intensity, duration, cumul...
Influence of Cumulative Rainfall on the Occurrence of Landslides in Korea
Influence of Cumulative Rainfall on the Occurrence of Landslides in Korea
This study presents the impact of cumulative rainfall on landslides, following the analysis of cumulative rainfall for 20 days before the landslide. For the 1520 landslides analyze...
Unstable evolution of railways slope under the rainfall-vibration joint action
Unstable evolution of railways slope under the rainfall-vibration joint action
Understanding the unstable evolution of railway slopes is the premise for preventing slope failure and ensuring the safe operation of trains. However, as two major factors affectin...
Refining Rainfall Erosivity Estimation: Methodological improvements towards more accurate soil erosion assessments
Refining Rainfall Erosivity Estimation: Methodological improvements towards more accurate soil erosion assessments
Rainfall erosivity is a fundamental parameter in estimating soil erosion as it quantifies the potential of raindrops to detach soil particles and make them available for subsequent...
Effect of biochar application on soil hydrophysical properties and erosion potential
Effect of biochar application on soil hydrophysical properties and erosion potential
Biochar application is considered a beneficial strategy for improving soil ecosystem services and also takes place in carbon sequestration, decreasing greenhouse gas emissions, ren...

Back to Top