Abstract in dt. Sprache nicht verfügbarContext Growing evidence suggests that climate change could substantially alter forest disturbances. Interactions between individual disturbance agents are a major component of disturbance regimes, yet how interactions contribute to their climate sensitivity remains largely unknown. Objectives Here, our aim was to assess the climate sensitivity of disturbance interactions, focusing on wind and bark beetle disturbances. Methods We developed a process-based model of bark beetle disturbance, integrated into the dynamic forest landscape model iLand (already including a detailed model of wind disturbance). We evaluated the integrated model against observations from three wind events and a subsequent bark ...
Global climate change is affecting ecosystems through warming temperatures, changing precipitation, ...
Studies of the effects of climate change on forests have focused on the ability of species to tolera...
Forest disturbance regimes are expected to intensify as Earth's climate changes. Quantifying forest ...
Bark beetles are a key forest disturbance agent worldwide, with their impact shaped by climate, fore...
Forest disturbances are sensitive to climate. However, our understanding of disturbance dynamics in ...
To study potential consequences of climate-induced changes in the biotic disturbance regime at regio...
Bark beetles are a key forest disturbance agent worldwide, with their impact shaped by climate, fore...
Interactions among disturbances are seldom quantified, and how they will be affected by climate chan...
Natural disturbances like wildfire, windthrow and insect outbreaks are critical drivers of compositi...
The purpose of the thesis is to support the initial stage of the Climate Smart Forestry Norway (CSFN...
Interactions among disturbance, climate, and vegetation determine landscape patterns and influence e...
Disturbances, both natural and anthropogenic, affect the configuration, composition, and function of...
Recent studies projecting future climate change impacts on forests mainly consider either the effect...
Understanding disturbance interactions and their ecological consequences remains a major challenge f...
Global climate change is affecting ecosystems through warming temperatures, changing precipitation, ...
Studies of the effects of climate change on forests have focused on the ability of species to tolera...
Forest disturbance regimes are expected to intensify as Earth's climate changes. Quantifying forest ...
Bark beetles are a key forest disturbance agent worldwide, with their impact shaped by climate, fore...
Forest disturbances are sensitive to climate. However, our understanding of disturbance dynamics in ...
To study potential consequences of climate-induced changes in the biotic disturbance regime at regio...
Bark beetles are a key forest disturbance agent worldwide, with their impact shaped by climate, fore...
Interactions among disturbances are seldom quantified, and how they will be affected by climate chan...
Natural disturbances like wildfire, windthrow and insect outbreaks are critical drivers of compositi...
The purpose of the thesis is to support the initial stage of the Climate Smart Forestry Norway (CSFN...
Interactions among disturbance, climate, and vegetation determine landscape patterns and influence e...
Disturbances, both natural and anthropogenic, affect the configuration, composition, and function of...
Recent studies projecting future climate change impacts on forests mainly consider either the effect...
Understanding disturbance interactions and their ecological consequences remains a major challenge f...
Global climate change is affecting ecosystems through warming temperatures, changing precipitation, ...
Studies of the effects of climate change on forests have focused on the ability of species to tolera...
Forest disturbance regimes are expected to intensify as Earth's climate changes. Quantifying forest ...