Data-driven Internet of Things (IoT) platforms, Artificial Intelligence, and cyber-physical infrastructure for sustainable water management, environmental monitoring, and resilient communities.
Currently working as Co-Investigator on the Flood and Coastal Resilience Innovation Programme project, collaborating with County Council, researchers, industry partners, and communities. We deploy IoT sensor networks to collect live surface and groundwater data, building integrated data repositories and visualization dashboards. This work shifts traditional drainage into multi-benefit blue-green infrastructure (e.g., swales, rain gardens, wetlands) through bottom-up governance and long-term stewardship.
Topic 3. Smart, Secure and Adaptive Water Infrastructures for Sustainable Water Management
Integrated Smart Monitoring and Nature-Based Flood Resilience Frameworks for River Basin Systems to develop a comprehensive, data-driven framework that integrates Internet of Things (IoT) sensor networks, AI-based analytics, and nature-based solutions (NbS) to enhance climate resilience and flood management at the river basin scale. By combining real-time environmental monitoring and machine learning models with nature-based retention measures (such as managed aquifer recharge and catchment restoration), the initiative provides decision-support tools for sustainable water resource management and hazard mitigation. Looking for Partners with Expertise in surface-groundwater modeling, river-basin restoration, and evaluating functions at catchment scales Expertise in integrated water resource management policy,, socio-economic valuation of ecosystem services, and inclusive environmental governance.
hydrological, nature-based solutions, water governance, flood resilience, river basin systems, ai & data-driven water infrastructure, environmental monitoring, integrated smart monitoring, sustainable water management, resilient communities