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Remote sensed data and hydraulic modelling

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Remote sensed data and hydraulic modelling Knut Alfredsen, Ana Juarez Department of civil and environmental engineering, NTNU
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Page 1: Remote sensed data and hydraulic modelling

Remote sensed data and hydraulic

modelling

Knut Alfredsen, Ana Juarez

Department of civil and environmental engineering, NTNU

Page 2: Remote sensed data and hydraulic modelling

2

Modelling for environmental impact

assessment.

20.00 40.00 60.00 80.00 100.00 120.00 140.00 160.00

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Page 3: Remote sensed data and hydraulic modelling

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Using data from remote sensing

Terrestrial laserDrone geometryRed LidarGreen Lidar

Drone derived data Satellite information

Page 4: Remote sensed data and hydraulic modelling

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LiDAR Bathymetry

Page 5: Remote sensed data and hydraulic modelling

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Comparisons

Håkon Sundt

Page 6: Remote sensed data and hydraulic modelling

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Prepared terrain model

Green Lidar river bathyemtry

Red Lidar TerrainBuildings from GIS database

Page 7: Remote sensed data and hydraulic modelling

7

Model calibration and verification

a b

Blue – simulated, Red – observedUncalibrated model

Page 8: Remote sensed data and hydraulic modelling

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Model simulations

Wetting – drying computations

Seguin Garcia, 2019 Limpens, 2019

Page 9: Remote sensed data and hydraulic modelling

Green LiDAR 2016 –Green LiDAR 2015

Erosion and deposition

100-year flood betweenmeasurements

Page 10: Remote sensed data and hydraulic modelling

River modifications

Bustos et al. 2019 Sustainability

Page 11: Remote sensed data and hydraulic modelling

River ice break-up

Page 12: Remote sensed data and hydraulic modelling

Mapping ice for modelling

Dense point cloud (145 mill points)

Page 13: Remote sensed data and hydraulic modelling

Integrate LiDAR and Drone/SfM geometry

Page 14: Remote sensed data and hydraulic modelling

Combine drone data with model results

Page 15: Remote sensed data and hydraulic modelling

Thank you!


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