The influence of vegetation on slope stability is well understood at the slope level but scaling up to the catchment level is still a challenge, partially because of a lack of suitable data to validate models. We tested the physical landslide model, LAPSUS_LS, which models slope stability at the catchment scale. LAPSUS_LS combines a hydrological model with a Limit Equilibrium Method model, and calculates the factor of safety of individual cells based on their hydrological and geomorphological characteristics. We tested two types of vegetation on slope stability: (i) coffee monoculture (Coffea arabica) and (ii) a mixed plantation of coffee and deep rooting Erythrina (Erythrina poeppigiana), trees. Using detailed data from Costa Rica, we perf...
The additional cohesion exercised by vegetation roots (cr) provides an important contribution to the...
Shallow landslides can pose a major threat to human lives and infrastructure over significant portio...
Both above- and below-ground biomass of plants provide additional strength to soil through different...
The influence of vegetation on slope stability is well understood at the slope level but scaling up ...
Use of LAPSUS_LS model to investigate vegetation influence on catchment slope stability – A case of ...
Effects of vegetation in improving slope stability can be recognized on both hydrological and mecha...
In undisturbed tropical montane rainforests massive organic layers accommodate the majority of roots...
This study proposes a new methodology for estimating the additional shear strength (or cohesion) exe...
Shallow landslides are instability events that lead to dramatic soil mass wasting in sloping areas a...
International audienceSlope Stability Models (SSMs) are valuable tools used as decision support in l...
Although vegetation is increasingly used to mitigate landslide risks, how vegetation affects the tem...
Although vegetation is increasingly used to mitigate landslide risks, how vegetation affects the tem...
This study provides the first insights of a methodology for estimating the additional cohesion exerc...
In this paper, the stability model SINMAP was applied to a mountainous study area in order to includ...
Although vegetation is increasingly used to mitigate landslide risks, how vegetation affects the tem...
The additional cohesion exercised by vegetation roots (cr) provides an important contribution to the...
Shallow landslides can pose a major threat to human lives and infrastructure over significant portio...
Both above- and below-ground biomass of plants provide additional strength to soil through different...
The influence of vegetation on slope stability is well understood at the slope level but scaling up ...
Use of LAPSUS_LS model to investigate vegetation influence on catchment slope stability – A case of ...
Effects of vegetation in improving slope stability can be recognized on both hydrological and mecha...
In undisturbed tropical montane rainforests massive organic layers accommodate the majority of roots...
This study proposes a new methodology for estimating the additional shear strength (or cohesion) exe...
Shallow landslides are instability events that lead to dramatic soil mass wasting in sloping areas a...
International audienceSlope Stability Models (SSMs) are valuable tools used as decision support in l...
Although vegetation is increasingly used to mitigate landslide risks, how vegetation affects the tem...
Although vegetation is increasingly used to mitigate landslide risks, how vegetation affects the tem...
This study provides the first insights of a methodology for estimating the additional cohesion exerc...
In this paper, the stability model SINMAP was applied to a mountainous study area in order to includ...
Although vegetation is increasingly used to mitigate landslide risks, how vegetation affects the tem...
The additional cohesion exercised by vegetation roots (cr) provides an important contribution to the...
Shallow landslides can pose a major threat to human lives and infrastructure over significant portio...
Both above- and below-ground biomass of plants provide additional strength to soil through different...