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Hubert Hasenauer - One of the best experts on this subject based on the ideXlab platform.
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Forest stand productivity derived from site conditions: an assessment of old Douglas-fir stands (Pseudotsuga menziesii (Mirb.) Franco var. menziesii) in Central Europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Key messageDouglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions.ContextTree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir ( Pseudotsuga menziesii (Mirb.) Franco var. menziesii ), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate.AimsThis study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria.MethodsThe importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests .ResultsThe results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters.ConclusionThe broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
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forest stand productivity derived from site conditions an assessment of old douglas fir stands pseudotsuga menziesii mirb franco var menziesii in central europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Douglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions. Tree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco var. menziesii), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate. This study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria. The importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests. The results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters. The broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
Dominik Thom - One of the best experts on this subject based on the ideXlab platform.
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Forest stand productivity derived from site conditions: an assessment of old Douglas-fir stands (Pseudotsuga menziesii (Mirb.) Franco var. menziesii) in Central Europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Key messageDouglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions.ContextTree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir ( Pseudotsuga menziesii (Mirb.) Franco var. menziesii ), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate.AimsThis study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria.MethodsThe importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests .ResultsThe results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters.ConclusionThe broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
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forest stand productivity derived from site conditions an assessment of old douglas fir stands pseudotsuga menziesii mirb franco var menziesii in central europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Douglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions. Tree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco var. menziesii), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate. This study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria. The importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests. The results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters. The broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
Tamara Eckhart - One of the best experts on this subject based on the ideXlab platform.
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Forest stand productivity derived from site conditions: an assessment of old Douglas-fir stands (Pseudotsuga menziesii (Mirb.) Franco var. menziesii) in Central Europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Key messageDouglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions.ContextTree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir ( Pseudotsuga menziesii (Mirb.) Franco var. menziesii ), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate.AimsThis study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria.MethodsThe importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests .ResultsThe results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters.ConclusionThe broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
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forest stand productivity derived from site conditions an assessment of old douglas fir stands pseudotsuga menziesii mirb franco var menziesii in central europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Douglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions. Tree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco var. menziesii), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate. This study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria. The importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests. The results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters. The broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
Roland Koeck - One of the best experts on this subject based on the ideXlab platform.
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Forest stand productivity derived from site conditions: an assessment of old Douglas-fir stands (Pseudotsuga menziesii (Mirb.) Franco var. menziesii) in Central Europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Key messageDouglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions.ContextTree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir ( Pseudotsuga menziesii (Mirb.) Franco var. menziesii ), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate.AimsThis study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria.MethodsThe importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests .ResultsThe results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters.ConclusionThe broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
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forest stand productivity derived from site conditions an assessment of old douglas fir stands pseudotsuga menziesii mirb franco var menziesii in central europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Douglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions. Tree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco var. menziesii), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate. This study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria. The importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests. The results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters. The broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
Marcela Van Loo - One of the best experts on this subject based on the ideXlab platform.
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Forest stand productivity derived from site conditions: an assessment of old Douglas-fir stands (Pseudotsuga menziesii (Mirb.) Franco var. menziesii) in Central Europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Key messageDouglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions.ContextTree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir ( Pseudotsuga menziesii (Mirb.) Franco var. menziesii ), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate.AimsThis study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria.MethodsThe importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests .ResultsThe results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters.ConclusionThe broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.
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forest stand productivity derived from site conditions an assessment of old douglas fir stands pseudotsuga menziesii mirb franco var menziesii in central europe
Annals of Forest Science, 2019Co-Authors: Tamara Eckhart, Elisabeth Pötzelsberger, Roland Koeck, Marcela Van Loo, Dominik Thom, Georg J. Lair, Hubert HasenauerAbstract:Douglas-fir growth correlates with the climate, the Soil Moisture Regime, and the Soil nutrient status, reflecting a broad physiological amplitude. Even though planting this non-native tree species is suggested as a viable strategy to improve adaptiveness of European forests to a more extreme climate and to assure future productivity, the expected temperature increase may induce a decline in forest stand productivity for Douglas-fir in already warm and dry regions. Tree species selection is one of the most important forest management decisions to enhance forest productivity and stand stability on a given site. Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco var. menziesii), a non-native species from north-western America, is seen as an important additional species option for adapting Central European forests to a changing climate. This study assesses Douglas-fir forest productivity derived from site conditions. We investigate climatic and physico-chemical Soil characteristics and productivity of 28 mature Douglas-fir stands growing on siliceous, as well as carbonate bedrock material in southern Germany and north-eastern Austria. The importance of climatic and physico-chemical Soil characteristics was analyzed with the machine learning method Random Forests. The results show that Douglas-fir growth correlates with climate, Soil Moisture, and Soil nutrient availability derived from ten climatic and physico-chemical Soil parameters. The broad pH optimum between 4.5 and 7.2 reflects the broad physiological amplitude of Douglas-fir, and no significant differences were detectable between carbonate and siliceous bedrock. We also conclude that climate change may induce a forest stand productivity decline, because lower productivity with the highest mean summer temperature across our study range was observed at the warmest sites in Eastern Austria.