Records |
Author |
Schönhart, M.; Schauppenlehner, T.; Kuttner, M.; Kirchner, M.; Schmid, E. |
Title |
Integrated Assessment of Climate Change Mitigation and Adaptation Impacts at Field and Farm level in the Austrian Mostviertel Region |
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Conference Article |
Year |
2014 |
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TradeM |
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TradeM International Workshop 2014 »Economics of integrated assessment approaches for agriculture and the food sector«, Hurdalsjøen, Norway, 2014-11-25 to 2014-11-27 |
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no |
Call Number |
MA @ admin @ |
Serial |
2812 |
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Author |
Schönhart, M.; Schauppenlehner, T.; Schmid, E. |
Title |
Integrated Land Use modelling of climate change impacts in two Austrian case study landscapes at field level |
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Conference Article |
Year |
2014 |
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TradeM |
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14th EAAE Congress, Ljubljana (Slovenia), 2014-08-26 to 2014-08-29 |
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Approved |
no |
Call Number |
MA @ admin @ |
Serial |
2813 |
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Author |
Schönhart, M.; Schauppenlehner, T.; Kuttner, M.; Kirchner, M.; Schmid, E. |
Title |
Integrated Assessment of Climate Change Mitigation and Adaptation Impacts at Landscape level: Mostviertel, Austria |
Type |
Conference Article |
Year |
2015 |
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TradeM |
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Climate-change impacts on farming systems in the next decades — why worry when you have CAP? A FACCE MACSUR workshop for policymakers, Brussels, 2015-05-06 to 2015-05-06 |
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no |
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MA @ admin @ |
Serial |
2814 |
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Author |
Sinabell, F.; Schmid, E.; Schönhart, M. |
Title |
Landwirtschaft und Klimawandel: Konsequenzen für die österreichische Landwirtschaft auf der Grundlage internationaler Forschungsergebnisse |
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TradeM |
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Ländlicher Raum |
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no |
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MA @ admin @ |
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2840 |
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Author |
Strauss, F.; Moltchanova, E.; Schmid, E. |
Title |
Spatially explicit modeling of long-term drought impacts on crop production in Austria |
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Journal Article |
Year |
2013 |
Publication |
American Journal of Climate Change |
Abbreviated Journal |
American Journal of Climate Change |
Volume |
2 |
Issue |
3 |
Pages |
1-11 |
Keywords |
Long-Term Drought Modeling; Dry Day Index; Biophysical Impacts; Spatial Variability; EPIC; Austria |
Abstract |
Droughts have serious and widespread impacts on crop production with substantial economic losses. The frequency and severity of drought events may increase in the future due to climate change. We have developed three meteorological drought scenarios for Austria in the period 2008-2040. The scenarios are defined based on a dry day index which is combined with bootstrapping from an observed daily weather dataset of the period 1975-2007. The severity of long-term drought scenarios is characterized by lower annual and seasonal precipitation amounts as well as more sig- nificant temperature increases compared to the observations. The long-term impacts of the drought scenarios on Aus- trian crop production have been analyzed with the biophysical process model EPIC (Environmental Policy Integrated Climate). Our simulation outputs show that—for areas with historical mean annual precipitation sums below 850 mm— already slight increases in dryness result in significantly lower crop yields i.e. depending on the drought severity, be- tween 0.6% and 0.9% decreases in mean annual dry matter crop yields per 1.0% decrease in mean annual precipitation sums. The EPIC results of more severe droughts show that spring and summer precipitation may become a limiting factor in crop production even in regions with historical abundant precipitation. |
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English |
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2167-9495 |
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CropM, ft_macsur |
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no |
Call Number |
MA @ admin @ |
Serial |
4507 |
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