Assessing Climate Risks and Vulnerability Across Slovenia’s Forest Site-Type Groups to Support Climate-Smart Management
(2) Slovenian Forestry Institut, Večna pot 2, 1000 Ljubljana, Slovenia, SI
(3) University of Ljubljana, Biotechnical Faculty, Department of Forestry and Renewable Forest Resources, Večna pot 83, 1000 Ljubljana, Slovenia, SI
Abstract
Understanding forest site dynamics is essential for close-to-nature forest management. In Slovenia, approximately 80 forest site-types are operationally distinguished and grouped into 19 major forest site-type groups that guide forest management planning. Climate change is altering natural forest dynamics and may reduce resilience through increased frequency and intensity of climate-related hazards. We cross-analysed climate-related risks, hazards and seasonal occurrence patterns against the biological and ecological characteristics of the 19 forest site-type groups to assess current exposure and vulnerability. Considered threats included forest fire; large-scale disturbances (windthrow, ice and snow breakage); pests and diseases; invasive alien species; torrential processes and floods; drought; and other temperature extremes. Current exposure was quantified using sanitary felling data as a proxy for realised disturbance impacts, while vulnerability was assessed as a composite of sensitivity and adaptability (adaptive capacity) of forest site-type groups to climate change, derived through a structured expert assessment. Results indicate pronounced differences in risk profiles among site-type groups, reflecting contrasting edaphic and climatic constraints, dominant species composition, and disturbance regimes. Combining empirical exposure indicators with expert-based trait assessments enabled identification of site-type groups with potentially high near-term exposure and limited adaptive capacity. Finally, we synthesise feasible measures to enhance future resilience of Slovenian forests, including targeted species and provenance selection, structural diversification, risk-aware regeneration strategies, and adaptive management aligned with site-specific limitations. The proposed framework supports prioritisation of interventions across forest site-type groups under Central European climate-change conditions.
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