Vegetated foreshores such as salt marshes, mangrove forests and reed fields can reduce wave loads on coastal dikes due to depth-induced wave breaking and wave attenuation by vegetation. Here we present field measurements of wave propagation over salt marshes during severe storm conditions, a modelling approach to describe the effect of vegetated foreshores on wave loads on the dike, and a probabilistic model to quantify the effect of vegetated foreshores on failure probabilities of the dike due to wave overtopping
For more than a century, coastal wetlands have been recognized for their ability to stabilize shorel...
Flooding resulting from hurricanes and other extreme storm events is a prominent risk along the coas...
Coastal communities around the world face increasing risk from flooding as a result of rising sea le...
Vegetated foreshores such as salt marshes, mangrove forests and reed fields can reduce wave loads on...
This paper analyses the effect of vegetation on wave damping under severe storm conditions, based on...
This paper analyses the effect of vegetation on wave damping under severe storm conditions, based on...
Vegetated foreshores adjacent to engineered structures (so-called hybrid flood defenses), are consid...
Global flood exposure simulations show that about 600 million people, of which 320 million in urban ...
In recent years, nature-based solutions have gained recognition for their capacity to reduce flood h...
Various flood protection measures are studied across the globe, and nature-friendly and environmenta...
Coastal communities around the world face increasing risk from flooding as a result of rising sea le...
Salt marshes are a characteristic feature of estuaries and coastal seas. They are found in the upper...
Flood risk reduction in coastal areas is traditionally approached from a conventional engineering pe...
This paper analyses the effect of observed vegetation characteristics on modelled wave heights. Deta...
Coastal communities are at an increasingly elevated risk of coastal flooding from storm waves, storm...
For more than a century, coastal wetlands have been recognized for their ability to stabilize shorel...
Flooding resulting from hurricanes and other extreme storm events is a prominent risk along the coas...
Coastal communities around the world face increasing risk from flooding as a result of rising sea le...
Vegetated foreshores such as salt marshes, mangrove forests and reed fields can reduce wave loads on...
This paper analyses the effect of vegetation on wave damping under severe storm conditions, based on...
This paper analyses the effect of vegetation on wave damping under severe storm conditions, based on...
Vegetated foreshores adjacent to engineered structures (so-called hybrid flood defenses), are consid...
Global flood exposure simulations show that about 600 million people, of which 320 million in urban ...
In recent years, nature-based solutions have gained recognition for their capacity to reduce flood h...
Various flood protection measures are studied across the globe, and nature-friendly and environmenta...
Coastal communities around the world face increasing risk from flooding as a result of rising sea le...
Salt marshes are a characteristic feature of estuaries and coastal seas. They are found in the upper...
Flood risk reduction in coastal areas is traditionally approached from a conventional engineering pe...
This paper analyses the effect of observed vegetation characteristics on modelled wave heights. Deta...
Coastal communities are at an increasingly elevated risk of coastal flooding from storm waves, storm...
For more than a century, coastal wetlands have been recognized for their ability to stabilize shorel...
Flooding resulting from hurricanes and other extreme storm events is a prominent risk along the coas...
Coastal communities around the world face increasing risk from flooding as a result of rising sea le...