Terrain analysis in geomorphology has undergone a serious quantitative revolution over recent decades. Lidar information has been efficiently used to automatically classify discrete landforms, map forest structures, and provide input for models simulating landscape development, e.g. channel incision development and rock-fall processes. Quantitative digital terrain analyses and dynamic modelling in geomorphology and forestry have immensely increased the validity of future landscape change scenarios. Further developments in digital GIS-based maps may lead to standardised automated terrain-analysis techniques and more insight into landscape evolution
Using radar and lidar data, the aim is to improve 3D rendering of terrain, including digital elevati...
Geomorphological maps are useful to a wide variety of applications, such as hazard risk analysis (Se...
ABSTRACT: Laser ranging is extremely accurate and efficient. Terres-trial scanning lidar (light dete...
Detailed geomorphological information has proven beneficial for the spatial recognition and delineat...
Detailed geomorphological information has proven beneficial for the spatial recognition and delineat...
Multi-temporal LiDAR digital terrain models (DTMs) are used for the development and testing of a met...
Active landslides have three major effects on a landscape: 1. land cover change, 2. topographical ch...
Active landslides have three major effects on landscapes: (1) land cover change, (2) topographical c...
ABSTRACT: The technology of airborne light detection and ranging (LiDAR), also referred to as Airbor...
Human societies now act as a potent geomorphic agent that has already transformed landscapes across ...
Detailed topographic data are important for both quantitative and qualitative fluvial studies. Topog...
Terrain surfaces conserve human activities in terms of textures and structures. With reference to ar...
n this paper a semi-automated method is presented to recognize and spatially delineate geomorphologi...
Heavy off-road traffic causes soil compaction and rutting, which can significantly reduce the yield ...
Recently, the three-dimensional geographical information about the earth's surface is being collecte...
Using radar and lidar data, the aim is to improve 3D rendering of terrain, including digital elevati...
Geomorphological maps are useful to a wide variety of applications, such as hazard risk analysis (Se...
ABSTRACT: Laser ranging is extremely accurate and efficient. Terres-trial scanning lidar (light dete...
Detailed geomorphological information has proven beneficial for the spatial recognition and delineat...
Detailed geomorphological information has proven beneficial for the spatial recognition and delineat...
Multi-temporal LiDAR digital terrain models (DTMs) are used for the development and testing of a met...
Active landslides have three major effects on a landscape: 1. land cover change, 2. topographical ch...
Active landslides have three major effects on landscapes: (1) land cover change, (2) topographical c...
ABSTRACT: The technology of airborne light detection and ranging (LiDAR), also referred to as Airbor...
Human societies now act as a potent geomorphic agent that has already transformed landscapes across ...
Detailed topographic data are important for both quantitative and qualitative fluvial studies. Topog...
Terrain surfaces conserve human activities in terms of textures and structures. With reference to ar...
n this paper a semi-automated method is presented to recognize and spatially delineate geomorphologi...
Heavy off-road traffic causes soil compaction and rutting, which can significantly reduce the yield ...
Recently, the three-dimensional geographical information about the earth's surface is being collecte...
Using radar and lidar data, the aim is to improve 3D rendering of terrain, including digital elevati...
Geomorphological maps are useful to a wide variety of applications, such as hazard risk analysis (Se...
ABSTRACT: Laser ranging is extremely accurate and efficient. Terres-trial scanning lidar (light dete...