This dataset is under embargo and will be made available by 31 March 2027 at the latest Find out more »
Multispectral drone orthoimagery of sclerophyllous and deciduous forests in La Campana National Park, Chile, January 2024
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This dataset is under embargo and will be made available by 31 March 2027 at the latest Find out more »
This dataset comprises multispectral orthoimagery acquired from six drone flights over sclerophyllous and deciduos forest in La Campana National Park, located in the Mediterranean bioregion of central Chile, conducted in January 2024. Raw images were processed in Agisoft Metashape following a standard structure-from-motion workflow: images were first aligned to estimate camera positions and generate a sparse point cloud, followed by the construction of a dense point cloud for detailed surface reconstruction, and finally generating the five-band orthomosaics (Blue, Green, Red, Red Edge, Near-Infrared) at high spatial resolution. These data were collected to quantify drought-induced canopy defoliation and forest structural degradation following extreme Hyperdrought events in 2019 and 2021. This resource is intended for researchers studying climate change impacts on Mediterranean-type ecosystems, remote sensing applications in forest ecology, and drought-induced mortality mechanisms.
Publication date: 2026-07-30
Format
TIFF
Spatial information
Study area
Spatial representation type
Raster
Spatial reference system
WGS 84
Spatial resolutions
0.085 metres
0.097 metres
0.13 metres
0.145 metres
0.268 metres
0.097 metres
0.13 metres
0.145 metres
0.268 metres
Temporal information
Temporal extent
2024-01-01 to 2024-01-31
Provenance & quality
Multispectral imagery was acquired in January 2024 using a DJI Phantom 4 Multispectral drone across six separate flights over La Campana National Park (Chile). The drone captured five spectral bands (Blue, Green, Red, Red Edge, Near-Infrared) at a spatial resolution of approximately 6.5 cm/pixel. Raw image files were processed in Agisoft Metashape software to generate georeferenced orthomosaics for each flight. Quality assurance steps included: (1) visual inspection of orthomosaics for artefacts, seam lines, and alignment errors; and (2) consistency checks across overlapping flight lines to ensure complete coverage of the images over the ground. Final orthoimagery was exported in GeoTIFF format with per-band digital number (DN) values ranging from 0 to 65535, accompanied by an RGB visualization recommended using Band 3 (Red), Band 2 (Green), and Band 1 (Blue) with min-max stretches of 0-3000. No atmospheric correction was applied; raw DN values are provided.
Licensing and constraints
This dataset is under embargo and will be made available by 31 March 2027 at the latest Find out more »
This dataset will be available under the terms of the Open Government Licence
Correspondence/contact details
Authors
Other contacts
Publisher
NERC EDS Environmental Information Data Centre
info@eidc.ac.uk
Rights holder
University of Stirling
Custodian
NERC EDS Environmental Information Data Centre
info@eidc.ac.uk
