Christian Bernhofer
Biographic Data
| ID | 7074229 |
|---|---|
| NAME | Christian Bernhofer |
| GIVEN NAMES | Christian |
| FAMILY NAME | Bernhofer |
| SIGNATURE | BERNHOFER C |
| AFFILIATIONS | Technische Universität Dresden |
| ORCID | 0000-0003-1061-3073 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2000 |
| LATEST PUBLICATION YEAR | 2019 |
| H-INDEX | 0 |
Regional climate projections for impact assessment studies in East Africa
In order to overcome limitations of climate projections from Global Climate Models (GCMs), such as coarse spatial resolution and biases, in this study, the Statistical Down-Scaling Model (SDSM) is used to downscale daily precipitation and maximum and minimum temperature (T-max and T-min) required by impact assessment models. We focus on East Africa, a region known to be highly vulnerable to climate change and at the same time facing challenges co…
Data-based perfect-deficit approach to understanding climate extremes and forest carbon assimilation capacity
Several lines of evidence suggest that the warming climate plays a vital role in driving certain types of extreme weather. The impact of warming and of extreme weather on forest carbon assimilation capacity is poorly known. Filling this knowledge gap is critical towards understanding the amount of carbon that forests can hold. Here, we used a perfect-deficit approach to identify forest canopy photosynthetic capacity (CPC) deficits and analyze how…
Climate control of terrestrial carbon exchange across biomes and continents
Understanding the relationships between climate and carbon exchange by terrestrial ecosystems \nis critical to predict future levels of atmospheric carbon dioxide because of the potential \naccelerating effects of positive climate–carbon cycle feedbacks. However, directly observed \nrelationships between climate and terrestrial CO2 exchange with the atmosphere across biomes \nand continents are lacking. Here we present data describing the relatio…
Europe-wide reduction in primary productivity caused by the heat and drought in 2003
Ein Konzept zur Regionalisierung des Klimas komplexer Mittelgebirgslandschaften, veranschaulicht am Beispiel des Osterzgebirges
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Ein Konzept zur Regionalisierung des Klimas komplexer Mittelgebirgslandschaften, veranschaulicht am Beispiel des Osterzgebirges
Europe-wide reduction in primary productivity caused by the heat and drought in 2003
Climate control of terrestrial carbon exchange across biomes and continents
Understanding the relationships between climate and carbon exchange by terrestrial ecosystems \nis critical to predict future levels of atmospheric carbon dioxide because of the potential \naccelerating effects of positive climate–carbon cycle feedbacks. However, directly observed \nrelationships between climate and terrestrial CO2 exchange with the atmosphere across biomes \nand continents are lacking. Here we present data describing the relatio…
Data-based perfect-deficit approach to understanding climate extremes and forest carbon assimilation capacity
Several lines of evidence suggest that the warming climate plays a vital role in driving certain types of extreme weather. The impact of warming and of extreme weather on forest carbon assimilation capacity is poorly known. Filling this knowledge gap is critical towards understanding the amount of carbon that forests can hold. Here, we used a perfect-deficit approach to identify forest canopy photosynthetic capacity (CPC) deficits and analyze how…
Regional climate projections for impact assessment studies in East Africa
In order to overcome limitations of climate projections from Global Climate Models (GCMs), such as coarse spatial resolution and biases, in this study, the Statistical Down-Scaling Model (SDSM) is used to downscale daily precipitation and maximum and minimum temperature (T-max and T-min) required by impact assessment models. We focus on East Africa, a region known to be highly vulnerable to climate change and at the same time facing challenges co…
Climate change (4 works) · Environmental Science (4 works) · Atmospheric sciences (3 works) · Biology (3 works) · Climate variability and models (3 works) · Climatology (3 works) · Ecosystem (3 works) · Plant Water Relations and Carbon Dynamics (3 works) · Carbon cycle (2 works) · Ecology (2 works)