The project delivered advances across all major nuclear R&I domains:
• LTO & Structural Integrity: new fracture mechanics datasets, improved fatigue models, TRL 5–6 digital twins, advanced NDE techniques.
• Radioactive Waste Management: next-generation THMC models, new immobilisation matrices, DGR operational readiness data, SSH-based trust and ethics frameworks.
• SMRs & AMRs: 10 critical R&D actions identified (data centre, passive safety, HALEU roadmap, licensing harmonisation), first EU comparison of SMR waste streams and licensing.
• Fuel Cycles & Materials: ATF advances (Cr coatings, SiC), multi-recycling strategies, high-entropy alloys, accelerated qualification using AI and high-throughput testing.
• Digitalisation & AI: predictive maintenance, anomaly detection, robotics, digital safeguards architectures, cybersecurity concepts.
• Hybrid Energy Systems: HTGR-based industrial heat concepts, nuclear hydrogen integration, district heating and industrial applications.
• Research Infrastructures: mapping of EU gaps (irradiation, hot cells, integral test facilities, URLs), strengthened transnational access.
• SSH Integration: public trust models, ethical frameworks, Youth Vision Statement 2050.
Key needs for further uptake include: harmonised EU licensing, HALEU production, demonstration facilities, standardisation of materials and digital twins, EU-wide waste acceptance criteria, nuclear hydrogen pilots, and long-term funding for research infrastructures.