For better understanding how coastal structures with gentle slopes behave during high energy events, a wave attack experiment representing a storm of 3000 waves was performed in a flume facility. Two setups with different steepness of slope were compared under the same conditions. In order to quantify changes in the rock slopes after the wave attack, a terrestrial laser scanner was used to obtain 3D coordinates of the rock surface before and after each experiment. Next, through a series of processing steps, the point clouds were converted to a suitable 2D raster for change analysis. This allowed to estimate detailed and quantitative change information. The results indicate that the area around the artificial coast line, defined as the inter...
Hard rock cliffs represent approximately 75% of the world's coastline. The rate and nature of the me...
Hard rock cliffs represent approximately 75% of the world's coastline. The rate and nature of the me...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...
The use of a terrestrial laser scanner is examined to measure the changes of rock slopes subject to ...
The use of a terrestrial laser scanner is examined to measure the changes of rock slopes subject to ...
Physical model tests were performed in a wave flume at Deltares with rock armoured slopes. A shallow...
Physical model tests were performed in a wave flume at Deltares with rock armoured slopes. A shallow...
Seacliff erosion dramatically alters the coastline of San Diego County through both marine and subae...
In this thesis research is presented which aims to explore and exploit the capability of a single po...
AbstractFor the understanding of weathering processes, quantitative detection and evaluation, includ...
Until now, an extensive design method for mild slopes has not been available. The aim of this thesis...
Detection of changes is a key component for monitoring the dynamics of natural environments. Such de...
This research applied terrestrial LiDAR for laboratory beach evolution experiments to quantify the i...
<p>Emergence of light detection and ranging (LiDAR) technology provides new tools for geomorphologic...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...
Hard rock cliffs represent approximately 75% of the world's coastline. The rate and nature of the me...
Hard rock cliffs represent approximately 75% of the world's coastline. The rate and nature of the me...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...
The use of a terrestrial laser scanner is examined to measure the changes of rock slopes subject to ...
The use of a terrestrial laser scanner is examined to measure the changes of rock slopes subject to ...
Physical model tests were performed in a wave flume at Deltares with rock armoured slopes. A shallow...
Physical model tests were performed in a wave flume at Deltares with rock armoured slopes. A shallow...
Seacliff erosion dramatically alters the coastline of San Diego County through both marine and subae...
In this thesis research is presented which aims to explore and exploit the capability of a single po...
AbstractFor the understanding of weathering processes, quantitative detection and evaluation, includ...
Until now, an extensive design method for mild slopes has not been available. The aim of this thesis...
Detection of changes is a key component for monitoring the dynamics of natural environments. Such de...
This research applied terrestrial LiDAR for laboratory beach evolution experiments to quantify the i...
<p>Emergence of light detection and ranging (LiDAR) technology provides new tools for geomorphologic...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...
Hard rock cliffs represent approximately 75% of the world's coastline. The rate and nature of the me...
Hard rock cliffs represent approximately 75% of the world's coastline. The rate and nature of the me...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...