ForestScope: Comprehensive tool for analysing soil, climate, and stand data in forest ecosystems

Nakhavali, A. ORCID: https://orcid.org/0000-0003-2675-6730, Derci Augustynczik, A.L., Repo, A., Vangi, E., & Havlik, P. ORCID: https://orcid.org/0000-0001-5551-5085 (2025). ForestScope: Comprehensive tool for analysing soil, climate, and stand data in forest ecosystems. Ecological Modelling 508 e111251. 10.1016/j.ecolmodel.2025.111251.

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Project: The role of European forests in achieving climate neutrality by 2050 (ForestNavigator, HE 101056875)

Abstract

In environmental conservation and management, analysing soil, climate, and stand data within forest ecosystems is crucial for understanding ecological dynamics, projecting changes, and developing sustainable forestry practices. Often, these data are scattered and unintegrated, complicating their use in modelling and analysis. Current tools lack modular integration of soil, climate, and stand data at large and diverse NFI datasets like International Co-operative Programme (ICP) scale (12,000+ sites). ForestScope bridges this gap by automating harmonization of ICP’s Level I/II datasets, together with soil and climate data, which is essential for informed decision-making in forest management.
ForestScope introduces an open-source framework designed to systematically organize, extract, and harmonize fragmented soil, climate, and stand data from ICP datasets. It includes comparative analyses of International Soil Reference and Information Centre (ISRIC) and Harmonized World Soil Database (HWSD) soil datasets, and assessments of Inter-Sectoral Impact Model Intercomparison Project (ISIMIP) climate models and Climatologies at High resolution for the Earth’s Land Surface Areas (CHELSA) against observational data, selecting HWSD v2.0 and CHELSA as optimal for ICP data gaps.
Additionally, ForestScope integrates a vegetation model enhancing National Forest Inventory (NFI) data processing, thus improving forest ecosystem modelling. This advancement deepens our understanding of forest dynamics and supports more effective management strategies.

Item Type: Article
Uncontrolled Keywords: Forest ecosystem modeling, Environmental data integration, Soil data analysis, Climate change impact assessment, National forest inventory (NFI)
Research Programs: Biodiversity and Natural Resources (BNR)
Biodiversity and Natural Resources (BNR) > Integrated Biosphere Futures (IBF)
Depositing User: Luke Kirwan
Date Deposited: 30 Jun 2025 11:46
Last Modified: 30 Jun 2025 11:46
URI: https://pure.iiasa.ac.at/20720

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