-
Floreat-f1 - 3D Textured Mesh OBJ - Aug 2022
The second capture of the area surrounding the Floreat Surf Life Saving Club, these sand dunes were captured by UAV imagery on 24th Aug 2022 for the Cambridge Coastcare beach... -
Floreat-f2 - 3D Textured Mesh OBJ - Aug 2021
The first capture of the area North of the Floreat Surf Life Saving Club, these sand dunes were captured by UAV imagery on 17th Aug 2021 for the Cambridge Coastcare beach dune... -
Floreat-f2 - Sparse Point Cloud LAS - Aug 2021
The first capture of the area North of the Floreat Surf Life Saving Club, these sand dunes were captured by UAV imagery on 17th Aug 2021 for the Cambridge Coastcare beach dune... -
Floreat-f1 - Point Cloud LAS - Aug 2022
The second capture of the area surrounding the Floreat Surf Life Saving Club, these sand dunes were captured by UAV imagery on 24th Aug 2022 for the Cambridge Coastcare beach... -
Floreat-f2 - Point Cloud LAS - Aug 2022
The second capture of the area North of the Floreat Surf Life Saving Club, these sand dunes were captured by UAV imagery on 24th Aug 2022 for the Cambridge Coastcare beach dune... -
Floreat-f3 - Contour lines SHP - Aug 2022
The second capture of the Floreat beach pipeline, these sand dunes were captured by UAV imagery on 24th Aug 2022 for the Cambridge Coastcare beach dune modelling and monitoring... -
Forest Productivity Index (Version 1.0 -Sept 2024 Release)
Australian Government Department of Climate Change, Energy, the Environment and Water
The Full Carbon Accounting Model (FullCAM) was developed to estimate greenhouse gas emissions and removals from the land sector, for inclusion in Australia’s National Greenhouse... -
National Forest and Sparse Woody Vegetation Data (Version 8.0 - 2023 Release)
Australian Government Department of Climate Change, Energy, the Environment and Water
Landsat satellite imagery is used to derive woody vegetation extent products that discriminate between forest, sparse woody and non-woody land cover across a time series from... -
National Forest and Sparse Woody Vegetation Data (Version 7.0 - 2022 Release)
Australian Government Department of Climate Change, Energy, the Environment and Water
Landsat satellite imagery is used to derive woody vegetation extent products that discriminate between forest, sparse woody and non-woody land cover across a time series from... -
Tenure of Australia's forests (2023)
Australian Bureau of Agricultural and Resource Economics and Sciences
Tenure of Australia’s forests (2023) is a continental spatial dataset of national land tenure types, assembled for Australia's State of the Forests Report – 2023... -
Forests of Australia (2018)
Australian Bureau of Agricultural and Resource Economics and Sciences
This dataset has been superseded by the Forests of Australia (2023). For further information please see: https://data.gov.au/data/dataset/forests-of-... -
Mean transpiration in September from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean trasnpiration in September from the plant canopy for the pre 1788 scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean transpiration in October from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean transpiration in October from the plant canopy for the pre 1788 scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean transpiration in November from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean transpiration in November from the plant canopy for the pre 1788 scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean transpiration in May from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean transpiration in May from the plant canopy for the pre 1788 scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially... -
Mean transpiration in March from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...