Active Engineering Education & Skills

DRIFT: Disaster Reconnaissance & Intelligent Forecasting Technology

In plain English

AI plain-English summary

After a disaster strikes, engineers will soon be able to assess building damage in real time by feeding drone-captured 2D images into an AI system that instantly maps structural vulnerability. Current post-disaster assessments rely on slow, manual inspections that delay emergency response and waste management. The DRIFT consortium—bringing together partners from South Korea, Türkiye, and the UK—aims to replace that bottleneck with a digital framework that processes visual data during the emergency phase itself. The project also tackles two linked problems: seismic vulnerability mapping, by harmonising risk data from multiple sources, and post-disaster waste management, by converting demolition rubble into usable reconstruction materials. If successful, the system will produce a QGIS-based tool that emergency planners and local authorities can use to prioritise where to send rescue teams, which buildings to cordon off, and how to recycle debris efficiently. The technology targets the quiet infrastructure of disaster response—the maps, databases, and logistics that determine how quickly a community can stabilise after an earthquake or explosion. The project is applied engineering, not fundamental science, and its value lies in shortening the gap between a disaster and an informed, coordinated recovery.

View original technical description
The DRIFT Eureka Consortium presents an innovative project to help communities prepare for, respond to, and recover from disasters. The project aims to enhance structural assessments, using AI-driven 2D and 3D imaging technology for real-time analysis of structural vulnerability and damage risk. **Key areas of focus include:** * **Digital Technologies:** Developing a framework for real-time data collection on building damage with rapid processing of 2D images during emergency phases. * **Resilient Construction**: Creating methods for assessing seismic vulnerability and establishing a harmonised database of seismic risk from diverse data sources. * **Post-Disaster Waste Management**: Offering solutions to convert demolition waste into usable materials for reconstruction, aiding environmental protection and recovery efforts. Partnering organisations from South Korea, Türkiye, and the UK bring a wealth of expertise, with each country leading a technical work package. Aralia coordinates the project, with collaborative networking to ensure strong social impact and commercial success. The final product will be a QGIS-based framework with Postgres integration, interfacing with public and private GIS resources.

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Related Research

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AROPCQA – Augmented Reality for Operative Productivity & Continuous Quality Analysis
A Collaborative Multi-agency Platform for Building Resilient Communities
The Dynamic Drivers of Flood Risk (DRIFT)
Drone Watch
Flood-PREPARED: Predicting Rainfall Events by Physical Analytics of REaltime Data

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Collaborative R&D

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