Die durchgeführte SWOT-Untersuchung baut auf der bisher im dynaklim-Arbeitsbereich „Politik, Planung und Verwaltung“ erstellten Status-Quo-Analyse auf und nimmt die Klimaauswirkungen auf die dynaklim-Region als Eingangsparameter. Anhand festgelegter Kriterien und Indikatoren wird die SWOT für die Verwaltungen in der Emscher-Lippe-Region durchgeführt und mit Beispielen aus fünf unterschiedlichen Politik- bzw. Handlungsfeldern (Gefahrenabwehr, Planung, Umwelt, Gesundheit und Wasserinfrastruktur) illustriert. Perspektivisch bildet die SWOT die Grundlage dafür, Empfehlungen für eine Erhöhung der Anpassungsfähigkeit an die Folgen des Klimawandels von Politik, Planung und Verwaltung in der dynaklim-Region zu erarbeiten, welche in der nächsten Projektphase in Zusammenarbeit von dynaklim und den Kommunen erprobt und umgesetzt werden sollen. Außerdem liefert die SWOT einen wichtigen Beitrag für die Erarbeitung der „Roadmap 2020: Regionale Klimaanpassung“ im Rahmen des dynaklim-Gesamtprojekts.
Dies ist ein Poster aus dem REGKLAM-Vorhaben, welches das Teilprojekt 3.2.1 mit dem Thema "Wasserhaushalt im Einzugsgebiet von Talsperren - Modellierung des Stofhaushaltes unter veränderten klimatischen Randbedingungen" vorstellt.
Die projizierte Klimaänderung für die Metropolregion Hamburg (MRH) führt vermehrt zu sommerlichen Trockenperioden. Besonders im Südosten der Region wird dadurch die Wasserverfügbarkeit als limitierender Produktionsfaktor in der Landwirtschaft weiter begrenzt. Eine Abnahme der Grundwasserneubildung und zugleich zunehmender Wasserbedarf der Pflanzen erfordert eine Anpassung der Bewässerungsmethoden und Landbewirtschaftung. Dazu untersuchen Projekte innerhalb des KLIMZUG-NORD Themenfelds T3 „Zukunftsfähige Kulturlandschaften“ die Auswirkungen des Klimawandels auf die Verfügbarkeit und Qualität des Wassers und entwickeln entsprechende Anpassungsmaßnahmen der Landwirtschaft bei gleichzeitiger Berücksichtigung der Ansprüche des Naturschutzes. Es wurden Kooperationen zwischen Akteuren aus Forschung, Planung, Wasser- und Landwirtschaft gebildet und vertieft; im Folgenden sind Ausschnitte der interdisziplinären Zusammenarbeit in den Modellregionen Lüneburger Heide und Biosphärenreservat Niedersächsische Elbtalaue präsentiert.
Over the last decades, Fucus vesiculosus, an ecologically important macroalga in the German Baltic Sea, has shown a massive retreat from the deeper zones of its former distribution presumably due to low light co-acting with other potential stressors such as high temperature, fouling, and grazing. In shallow water F. vesiculosus may be exposed to high water temperatures during summer seasons. Intensity and frequency of heat waves are expected to increase due to climate change which could potentially affect all fucoid life stages. Early life stage processes (fertilization, germination) are often considered particularly sensitive to stress. If the mortality caused by a first heat wave in a genetically diverse population selects for stress resistance, we would expect the survivors to be less sensitive to a second heat wave or possibly even to other stressors like feeding pressure.
In the present study, the mortality of early post-settlement stages of F. vesiculosus under thermal stress and the sensitivity of survived recruits against a proximate stressor (feeding pressure, second heat wave) were analysed by laboratory experiments. The mortality of early fucoid life stages at 25°C, compared to their mortality at 15°C was significantly higher. Regrettably, the ensuing assessment of feeding impact by Idotea baltica and Hydrobia ulvae on the surviving germlings could not be analysed since the two consumer species unexpectedly avoided feeding on the young stages of F. vesiculosus. During the second thermal stress experiment fucoid offspring which was genetically preselected by high temperature (first heat wave: 25°C) differed not significantly in sensitivity from fucoid offspring without prior stress.
A reestablishment of Fucus vesiculosus where it is locally vanished would be an indicator for improved water quality. Thus the Agency for Agriculture, Environment and Rural Areas of Schleswig - Holstein (LLUR) is thinking about opportunities to resettle F. vesiculosus. On behalf of RADOST project, the tolerance of early fucoid life stages towards thermal stress was analysed and after four days of thermal treatment a high percentage of the treated fucoid offspring survived. It might be that inside species genotypes exist which are less sensitive against future environmental changes.
The establishment of a consciousness for climate change processes and the necessary changes for climate-adapted agriculture and a climate-adapted food industry will require communications and interaction at the level of economic clusters, in order to initiate exchange and cooperation alliances by means of targeting network formation. The Oldenburg Münsterland Agriculture and Food Forum (AEF) is an association of 75 businesses in the agriculture and food sector which operates as an interface between the scientific community and everyday practice. In close cooperation with the Carl von Ossietzky University of Oldenburg, key issues for regional climate adaptation measures have been developed on the basis of scientific ascertainments and practice-oriented needs.
Consequences resulting from future Climate Change may be one of the most severe threats for people and economies in many countries of the world. Besides the problem of sea level rise, also possible general changes in the frequency and intensity of storms as well as general changes in the average wind field are expected for the future. With respect to the coastal protection possible future strategies and also possible future measures are analyzed and assessed with the result that technical, morphological, socio-economic and aesthetical aspects play a role.
Rainfall statistics are composed based on data gained by precipitation measurements and from climate models. These statistics are carried out for both periods in the past and the future. When analysing the time series, different trends can be seen in the measured data of the past and the model data for future periods. Influences on the statistically determined precipitation amounts caused by changes can be neglected for past periods. However, significant increases of the statistical precipitation amounts can be observed for the future. Here a pragmatic approach is presented, showing how to consider possible increases in the statistical precipitation amounts – due to the climate change signal – in the dimensioning of water management systems.