Andrey Lessa Derci Augustynczik
Biographic Data
| ID | 6017718 |
|---|---|
| NAME | Andrey Lessa Derci Augustynczik |
| GIVEN NAMES | Andrey Lessa Derci |
| FAMILY NAME | Augustynczik |
| SIGNATURE | AUGUSTYNCZIK A L D |
| AFFILIATIONS | University of Freiburg |
| ORCID | 0000-0001-5513-5496 |
| VERIFIED | Yes |
| TOTAL WORKS | 8 |
| TOTAL CITATIONS | 7 |
| AUTHOR COUNT | 8 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2016 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 2 |
Adapting forest management to climate change impacts and policy targets in the EU: Insights from the coupled GLOBIOM/G4M-i3PGmiX model
In brief
Flammable futures—storylines of climatic impacts on wildfire events and palm oil plantations in Indonesia
Wildfire events are driven by complex interactions of climate and anthropogenic interventions. Predictions of future wildfire events, their extremity, and their impact on the environment and economy must account for the interactions between these drivers. Economic policy and land use decisions influence the susceptibility of an area to climate extremes, the probability of burning, and future decision making. To better understand how climate-drive…
Controlling landscape-scale bark beetle dynamics: Can we hit the right spot
Reconciling forest profitability and biodiversity conservation under disturbance risk: The role of forest management and salvage logging
Forest management and disturbances are among the main drivers of changes in forest dynamics in temperate ecosystems. To promote and maintain forest multifunctionality and species persistence in the landscape, it is critical that the interactions between these factors and forest biodiversity are disentangled. Still, the relationships between disturbances and forest management are poorly understood and may hinder an adequate planning of management …
Socially optimal forest management and biodiversity conservation in temperate forests under climate change
Retention as an integrated biodiversity conservation approach for continuous-cover forestry in Europe
Retention forestry implies that biological legacies like dead and living trees are deliberately selected and retained beyond harvesting cycles to benefit biodiversity and ecosystem functioning. This model has been applied for several decades in even-aged, clearcutting (CC) systems but less so in uneven-aged, continuous-cover forestry (CCF). We provide an overview of retention in CCF in temperate regions of Europe, currently largely focused on hab…
Conservation Costs of Retention Forestry and Optimal Habitat Network Selection in Southwestern Germany
Promoting harvesting stands connectivity and its economic implications in Brazilian forest plantations applying integer linear programming and simulated annealing
Promoting harvesting stands connectivity and its economic implications in Brazilian forest plantations applying integer linear programming and simulated annealing
Retention as an integrated biodiversity conservation approach for continuous-cover forestry in Europe
Retention forestry implies that biological legacies like dead and living trees are deliberately selected and retained beyond harvesting cycles to benefit biodiversity and ecosystem functioning. This model has been applied for several decades in even-aged, clearcutting (CC) systems but less so in uneven-aged, continuous-cover forestry (CCF). We provide an overview of retention in CCF in temperate regions of Europe, currently largely focused on hab…
Conservation Costs of Retention Forestry and Optimal Habitat Network Selection in Southwestern Germany
Promoting harvesting stands connectivity and its economic implications in Brazilian forest plantations applying integer linear programming and simulated annealing
Conservation Costs of Retention Forestry and Optimal Habitat Network Selection in Southwestern Germany
Reconciling forest profitability and biodiversity conservation under disturbance risk: The role of forest management and salvage logging
Forest management and disturbances are among the main drivers of changes in forest dynamics in temperate ecosystems. To promote and maintain forest multifunctionality and species persistence in the landscape, it is critical that the interactions between these factors and forest biodiversity are disentangled. Still, the relationships between disturbances and forest management are poorly understood and may hinder an adequate planning of management …
Socially optimal forest management and biodiversity conservation in temperate forests under climate change
Retention as an integrated biodiversity conservation approach for continuous-cover forestry in Europe
Retention forestry implies that biological legacies like dead and living trees are deliberately selected and retained beyond harvesting cycles to benefit biodiversity and ecosystem functioning. This model has been applied for several decades in even-aged, clearcutting (CC) systems but less so in uneven-aged, continuous-cover forestry (CCF). We provide an overview of retention in CCF in temperate regions of Europe, currently largely focused on hab…
Controlling landscape-scale bark beetle dynamics: Can we hit the right spot
Flammable futures—storylines of climatic impacts on wildfire events and palm oil plantations in Indonesia
Wildfire events are driven by complex interactions of climate and anthropogenic interventions. Predictions of future wildfire events, their extremity, and their impact on the environment and economy must account for the interactions between these drivers. Economic policy and land use decisions influence the susceptibility of an area to climate extremes, the probability of burning, and future decision making. To better understand how climate-drive…
Adapting forest management to climate change impacts and policy targets in the EU: Insights from the coupled GLOBIOM/G4M-i3PGmiX model
In brief
Environmental Science (8 works) · Agroforestry (7 works) · Ecology (7 works) · Forest Management and Policy (7 works) · Environmental resource management (6 works) · Forest management (6 works) · Geography (6 works) · Biology (5 works) · Biodiversity (4 works) · Climate change (4 works)