Multi-hazard approach and cumulative / cascading impacts
Develops a multi-hazard approach addressing cumulative and cascading disaster impacts.
Description
Expected outcome
Project results are expected to contribute to some or all of the following expected outcomes: Integrated single-hazard systems into multi-hazard next generation predictive models to assess cascading effects (e.g., heatwave, floods, droughts, landslides, heavy rain) and interactions across meteorological, geophysical, and technological hazards; Enhanced hazard forecasting and response through research on model integration and platform interoperability; Development of holistic risk and resilience metrics to support multi-hazard prevention strategies, encompassing main physical, economic and social effects; Improvement of analysis models considering evolving vulnerability state, due to cascading and cumulative effects, through numerical simulations and experimental tests, possibly also supported by AI applications; Collected reliable data (same granularity and format) and ways to share and analyse it. The interoperability of all kinds of systems and information sharing is crucial, based on the need-to-know principle; Improved knowledge/experience-sharing from past emergencies to cope with future emergencies, also strengthening trans-national knowledge and data exchange among EU countries as well as from early warning to early action; Improved disaster risk and resilience management due to single/multiple threats through a holistic, systemic and cross-cutting approach, also considering relevant changes such as changing climate, digital transformation, environmental and socio-economic conditions; Development of holistic Risk and Resilience Metrics to support multi-hazard prevention strategies, encompassing main physical, economic and social effects; Solutions shall include the analysis of the physical, social and governance systems and take into account the development of an EU comprehensive risks and threats assessment.
Scope
Advancing multi-hazard risk assessment and disaster resilience is a necessity. Building on the integrated all-hazard approach, the advancement will be achieved by integrating single-hazard models into next-generation predictive systems capable of analysing cascading and cumulative effects. A key focus should be on early and anticipatory action, improving the understanding of interactions between meteorological, geophysical, and technological hazards, including their compounding impacts on societies, economies, and critical infrastructure. Proposals should aim to develop and validate integrated forecasting models, that enhance the prediction and management of multi-hazard scenarios, supports flexibility and extensibility, and coordination of responses by incorporating real-time data, AI-driven analytics, and remote sensing technologies. These models should facilitate improved hazard forecasting by addressing challenges in platform interoperability and data exchange, ensuring that diverse hazard monitoring systems at local, national, and global levels can effectively communicate and operate in synergy. Efforts should also explore the interoperability of regional and national hazard warning systems, enhancing global forecasting capabilities for hazards such as landslides triggered by extreme weather events, or cumulative damage modelling for earthquakes and their aftershocks. Research should address gaps in loss estimation models by considering the cascading and long-term impacts of disasters on infrastructure, the built environment, supply chains, and diverse needs of communities. Furthermore, proposals should contribute to the development of advanced tools and methodologies to assess the combined effects of multiple hazards on critical infrastructure, ensuring that disaster risk management strategies account for interdependencies across sectors This should include scenario-based stress testing, digital twins for risk modelling, and AI-powered decision-support systems
What this means for cities and regions
Multi-hazard approach and cumulative or cascading impacts — research and operational tools that go beyond single-hazard scenarios to handle compound events (e.g. heat + drought + wildfire + air-quality + power-loss). High relevance for regional civil-protection agencies and cities exposed to multiple climate hazards. Project size around €4 million per grant; close 5 November 2026.
Key facts
Submission deadline
5 November 2026, 17:00 (Brussels time)
Published
Opens
Programme
Total envelope
Per project
Expected grants
Co-funding rate
Eligibility
Eligible countries
Eligible NUTS regions
—Eligible organisation types
Min. consortium size
—Min. partner countries
—Eligibility notes
Who can apply
- Any legal entity (public body, private body, NGO, university, research organisation, SME, large company) established in an EU Member State (including Overseas Countries and Territories), or in a Horizon Europe Associated Country.
- The list of Horizon Europe Associated Countries is maintained on the EU Funding & Tenders Portal.
Consortium rule for this topic
Proposals must be submitted by a consortium of at least 3 independent legal entities, each established in a different EU Member State or Horizon Europe Associated Country, of which at least one must be established in an EU Member State.
Co-financing rate
- Research and Innovation Actions (RIA): 100% of eligible direct costs + 25% flat-rate indirect costs.
- Innovation Actions (IA): 70% of eligible direct costs (100% for non-profit legal entities) + 25% flat-rate indirect costs.
- Coordination and Support Actions (CSA): 100%.
The applicable Type of Action is indicated on the topic record in the Funding & Tenders Portal.
Restrictions and special cases
- Natural persons not eligible except sole traders.
- International organisations and the JRC are eligible.
- Other EU bodies cannot participate.
- Financial support to third parties is allowed where the topic explicitly provides for it.
EU restrictive measures (TEU Article 29 / TFEU Article 215) and EU conditionality measures (Regulation 2020/2092) apply. Currently this excludes Hungarian public-interest trusts established under Hungarian Act IX of 2021 (Council Implementing Decision (EU) 2022/2506).
Space data condition
If the project uses satellite-based Earth observation, positioning, navigation or related timing data and services, beneficiaries must make use of Copernicus and/or Galileo/EGNOS. Other data and services may be used in addition.
Participants this topic requires
This topic requires the active involvement, as beneficiaries, of at least 2 authorities in charge of disaster risk or crisis communication and 2 representatives of local or regional authorities in charge of disaster response from at least 3 different EU Member States or Associated Countries.
For this purpose, "authorities in charge of disaster risk" are public bodies operating at national level with a legally defined responsibility for disaster risk management (the Commission confirmed this on 30 July 2026). A city or region does not count as such an authority, so the consortium needs a national civil protection authority or equivalent. Where the topic separately asks for local or regional authorities, as quoted above, that is where a city or region fits.
Classification
Thematic domains
Activity types
Space relevance
Tier B — space tools are implicitly needed to deliver the call's outcomes.
Space services
Sources
HORIZON-CL3-2026-01-DRS-02
Ingested May 20th, 2026
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