RESES · Modelling the dynamics of resilience in coupled social-ecological systems
6РП — Действия „Мария Кюри“
- Период
- 2006-01-01 → 2007-12-31
- Финансиране от ЕС
- 161 209 €
- Участници
- 2
- Схема
- OIF
Линиите свързват координатора с партньорите.
Накратко на български
Взаимодействието между хората и природни ресурси, като водата в засушливи райони, се анализира чрез математически модели. Това помага да се разбере как различните форми на управление влияят върху способността на системата да издържи на климатични промени.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Final Activity Report Summary - RESES (Modelling the dynamics of resilience in coupled social-ecological systems)
The resilience of social-ecological systems and their capacity to adapt to global or local changes are valuable system properties in face of global change. They determine the degree to which a system can flexibly react and cope with unforeseen events or gradual change without losing major functions, such as the delivery of ecosystem goods and services. It is therefore one of the principal aims of adaptive management to enhance the resilience of a given system. However, the dynamics of resilience, factors and mechanisms that determine resilience in a complex environmental management situation and approaches to manage for resilience are insufficiently known. This project developed agent based and equation based models of dynamic interactions between actors and an exploited resource system, namely water, fish or vegetation, to investigate the resilience of those coupled systems to short term disturbance, such as water scarcity or rainfall variability, and long term changes, such as increased variability of water flows. An agent-based model of water use in a semiarid river basin was utilised to test the impact of different governance structures and diversification of water use on the performance of the social-ecological system in face of high variability in water flows. A comparison of a centralised versus a fragmented governance system revealed that, under the given assumptions, the resilience of the system was higher under a centralised regime while the fragmented, local system could perform better in case actors were given the opportunity to diversify their water use. In the latter case the actors benefited from different dynamic responses of the exploited resources to variability in water availability, i.e. the buffer capacity of a fish population versus the direct reaction of the agricultural sector to short term water scarcity. In addition, a model of a rangeland system was used to test rising variance in a state variable as an indicator of the systems approach to a threshold and thus loss of resilience. It revealed that variance actually increased when the system was close to the threshold; however, the signal was not unambiguous and might be difficult to detect in a real system. Overall, the project revealed that a multitude of interacting factors could affect the resilience of a system on different scales. Resilience of a coupled social-ecological system was to a large extent determined by the behavioural responses of individual and collective actors to environmental and social change, as well as by their capacity to adapt institutions and resource use to changing conditions. Nevertheless, research on institutional dynamics and approaches for modelling change in collective behaviour and institutions was only at its beginning by the time of the project completion.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
The challenges and uncertainties of global change and the complexity and unpredictability of the dynamics of complex social - ecological systems demand for new approaches to ecosystem and resources management.Strategies for adaptive management aim to strengthen the flexibility and resilience of the system to enhance its capacity to cope with unexpected change. Resilience is the potential of a system to remain in a particular configuration, to maintain its feedbacks and functions and to reorganise following disturbance driven change.The dynamics of coupled social-ecological systems and factors determining their resilience are still largely unknown. The importance of feedbacks, self-organisation, structural characteristics, such as diversity, redundancy etc., have been recognized, but their integrated analysis and understanding needs further research.The aim of the proposed research is to investigate system properties and processes that build and maintain a system's resilience. Special emphasis will be put o n the analysis of the dynamics of resilience in coupled social-ecological systems (SESs) to provide a basis for adaptive ecosystem and resources management.This shall be achieved through cross-system analysis and the development of coupled models of ecological and social systems. Simulation models will be used to investigate the role of organisational structure, of processes at different scales, positive and negative feedbacks, information flow, level of interaction, and other factors for the resilience of the coupled system.The project will focus on systems where people and ecosystems share a common resource, e.g. water, or where an ecosystem is managed by the people benefiting from its services.The integrated human - nature system is treated as a complex adaptive system and tools and methods from complex systems research will be applied to study its dynamics and stability properties.
Оригинален текст от CORDIS (на английски).
Участници
- UFZ - UMWELTFORSCHUNGSZENTRUM LEIPZIG - HALLE GMBH · LEIPZIGКоординаторГермания
- PRINCETON UNIVERSITY · PRINCETONСъединени щати
Връзки
Данни: CORDIS, © Европейски съюз
