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Data for: Fire-Moisture Interactions Shape Recovery Trajectories Across Temperate Vegetation Communities. Greater Blue Mountains World Heritage Area, 2015 - 2024 

Ver: 1.0
Status of Data: completed
Update Frequency: notPlanned
Security Classification: unclassified
Dataset Published: 2026-08-06
Dataset Last Modified: 2026-08-06
Metadata viewed 0 times
Dataset accessed 0 times
Metadata Created: 2026-07-17
Metadata Last Modified: 2026-08-06
How to cite this collection:
Simpson, E., Wardle, G., Dickman, C. & Greenville, A. (2026). Data for: Fire-Moisture Interactions Shape Recovery Trajectories Across Temperate Vegetation Communities. Greater Blue Mountains World Heritage Area, 2015 - 2024. Version 1.0. Terrestrial Ecosystem Research Network. Dataset. https://dx.doi.org/10.25901/64bm-jw66 
Data can be accessed from the following links:
HTTPData Dictionary
HTTPFinal Dataset
HTTPPFSI-processing-scripts
HTTPPoint-of-truth metadata URL
HTTPro-crate-metadata.json
This dataset provides soil moisture and post-fire stability index (PFSI) values across 760 sites in the Greater Blue Mountains World Heritage Area between 2015 - 2024 (inclusive). Sites were stratified based on the severity of the 2019/20 bushfires and by vegetation community. The seven vegetation communities assessed were: dry sclerophyll forest, wet sclerophyll forest, rainforest, heathland, freshwater wetland, forested wetland and grassy woodland.

This dataset comprises two JavaScripts, one R script, and one CSV. The first JavaScript calculates the PFSI (i.e. the relative change in vegetation biomass) from satellite imagery. The second generates randomised sampling sites and extracts corresponding soil moisture and PFSI values. The CSV file contains the combined output of both JavaScripts and can be used alongside the R script to reproduce our model. The csv file and accompanying data dictionary are provided as direct attachments to this submission. Scripts are hosted separately on GitHub (link provided).

This dataset is supplementary to the publication: Simpson et al. 2026, Fire-Moisture Interactions Shape Recovery Trajectories in Temperate Vegetation Communities, Global Change Biology
 
Credit
We at TERN acknowledge the Traditional Owners and Custodians throughout Australia, New Zealand and all nations. We honour their profound connections to land, water, biodiversity and culture and pay our respects to their Elders past, present and emerging. The creation of this dataset was supported by an Australian Government Research Training Program (RTP) Scholarship and a Holsworth Wildlife Research Endowment through the Ecological Society of Australia. Data was sourced from Terrestrial Ecosystem Research Network (TERN) infrastructure, which is enabled by the Australian Government’s National Collaborative Research Infrastructure Strategy (NCRIS).
 
Purpose
This data was used to inform assessment of post-fire vegetation recovery under varying moisture conditions (e.g., drought, extreme rainfall). These methods can be extended to other areas across Australia.
 
Lineage
Methods to calculate PFSI were based on: Gibson, R., L. White, S. Hislop, R. Nolan, and J. Dorrough. 2022. "The post-fire stability index: a new approach to monitoring post-fire recovery by satellite imagery", Remote Sensing of Environment 280: 113151. https://doi.org/10.1016/j.rse.2022.113151

Soil moisture composites were generated from: Stenson, M., R. Searle, B. Malone, A. Sommer, L. Renzullo, and H. Di. 2021. "Australia wide daily volumetric soil moisture estimates. Version 1.0", Terrestrial Ecosystem Research Network, Dataset: https://dx.doi.org/10.25901/b020-nm39.

The vegetation and fire severity layers are available on the SEED data portal.
  • State Government of NSW and Department of Climate Change, Energy, the Environment and Water (DCCEEW). 2020. "NSW State Vegetation Type Map", accessed from The Sharing and Enabling Environmental Data Portal [https://datasets.seed.nsw.gov.au/dataset/95437fbd-2ef7-44df-8579-d7a64402d42d]
  • State Government of NSW and Department of Climate Change, Energy, the Environment and Water (DCCEEW) 2020. "Fire Extent and Severity Mapping (FESM)", accessed from the Sharing and Enabling Environmental Data Portal [https://datasets.seed.nsw.gov.au/dataset/33c2ee86-d2f7-4aaf-8c40-76b6d393a35c]
 
Method DocumentationScripts
Procedure StepsData not provided.
Spatial Description
Greater Blue Mountains World Heritage Area, NSW, Australia
 
Temporal Coverage
From 2014-12-01 to 2024-11-30 
Spatial Resolution

Data not provided.

Vertical Extent

Data not provided.

ANZSRC - FOR
Fire ecology
Terrestrial ecology
Data Stream
Satellite Remote Sensing
GCMD Sciences
LAND SURFACE - LANDSCAPE ECOLOGY
Horizontal Resolution
250 km - < 500 km or approximately 2.5 degrees - < 5.0 degrees
Parameters
fire severity
post-fire stability index
soil moisture content
vegetation type
Project
Others
Temporal Resolution
Seasonal
Topic
biota
environment
Author
Simpson, Emily
Co-Author
Wardle, Glenda
Dickman, Chris
Greenville, Aaron
Contact Point
Simpson, Emily
Publisher
Terrestrial Ecosystem Research Network
Terrestrial Ecosystem Research Network
80 Meiers Road, Indooroopilly, Queensland, 4068, Australia.
Contact Us
Creative Commons Attribution 4.0 International Licence
https://creativecommons.org/licenses/by/4.0/
The Creative Commons Attribution 4.0 International (CC BY 4.0) license allows others to copy, distribute, display, and create derivative works provided that they credit the original source and any other nominated parties. Details are provided at https://creativecommons.org/licenses/by/4.0/ 
Please cite this dataset as {Author} ({PublicationYear}). {Title}. {Version, as appropriate}. Terrestrial Ecosystem Research Network. Dataset. {Identifier}. 
TERN services are provided on an "as-is" and "as available" basis. Users use any TERN services at their discretion and risk. They will be solely responsible for any damage or loss whatsoever that results from such use including use of any data obtained through TERN and any analysis performed using the TERN infrastructure.
Web links to and from external, third party websites should not be construed as implying any relationships with and/or endorsement of the external site or its content by TERN.

Please advise any work or publications that use this data via the online form at https://www.tern.org.au/research-publications/#reporting 

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