CROSSEU aims to respond to increasing societal needs to reduce climate-damaging actions, adapt to the expected consequences, and increase socio-economic resilience.
The main ambition of the project is to provide a science based and ready to use decision support system built on enhanced understanding of the biogeophysical risks from climate change, and their socioeconomic impacts in Europe, fully co-produced and implemented with practice stakeholders to ensure its uptake, and support effective coping with sectoral and cross sectoral climate risks within the context of the European green transition.
It will do this by delivering a climate-sensitive framework, including a ready-to-use decision support system platform and technical recommendations, to inform investment decisions, cost-effective adaptation and mitigation options and policy response to climate change.
The project will contribute to advancing the understanding of the socio-economic risks and response options associated with climate change impact in Europe in different timeframes, including the post-COVID-19 societal-environmental transformation, and derive practical recommendations for political and societal action.
The solutions proposed are based on an extensive assessment of the socio-economic risks of climate change in a cross-sectoral hierarchical approach, based on storylines addressing key categories of climate hazards in different socio-economic sectors and climate change-sensitive areas across countries and European regions.
The project will offer a ready-to-use solution that integrates complex information from available climate risk data sets and non-climatic sectoral data collected during the project implementation and derived through modelling based on demand-driven climate-socio-economic pathways.
CROSSEU is designed to bridge the science-based information about the economic impacts of climate change, and the unique contributions of the project will be:
- the quantification of costs of existent and emergent socio-economic risks and opportunities at NUTS3 level
- an improved representation of adaptation within biogeophysical climate change risk
- a better consideration of modelling uncertainties by identifying their nature, assessing their characteristics in a systematic way to determine a better informed and robust decision-making.