Client / Mission Context

Rapid-response humanitarian and engineering assessment following the 2025 Cebu earthquake in the Philippines. Supported by the US-Philippine Society, the mission focused on assessing structural damage across five critical schools in the municipalities of Medellin and Torrevillas to safeguard students and guide community recovery.

Problem / Requirement

  • Urgent need to evaluate structural integrity and damage across multiple educational facilities following severe seismic activity.

  • Requirement for fast, safe, and highly accurate visual and spatial documentation to prioritize immediate structural repairs and inform long-term rehabilitation planning without risking personnel in unstable structures.

AVTS Role

Rapid mobilization partner, deploying certified drone pilots and structural engineers to execute aerial inspections, high-resolution damage documentation, and geospatial safety analysis.

Equipment & Technology Used

  • Aerial Inspection Systems: High-resolution imaging drones optimized for close-range structural inspection.

  • Geospatial & Analysis Tools: Geographic Information System (GIS) software for spatial damage mapping and safety planning analysis.

  • Imaging Hardware: Professional high-resolution optical cameras for detailed structural fracture documentation.

Scope of Work

  1. Rapid Field Mobilization: Deployed specialized drone operators and engineering personnel directly to the affected inspection zones in Medellin and Torrevillas.

  2. Aerial Structural Inspections: Conducted close-range drone flights across five designated schools to safely capture high-resolution imagery of roofs, facades, and high-risk structural elements.

  3. Condition Documentation: Utilized advanced photography to document fractures, shifts, and structural vulnerabilities in detail.

  4. GIS Damage Analysis: Integrated captured imagery into GIS platforms to map out conditions, establish safety zones, and categorize repair priorities.

Deliverables

  • High-resolution aerial inspection datasets and localized structural damage portfolios.

  • GIS-mapped condition assessments identifying high-risk and stabilized zones across all five school sites.

  • Actionable engineering assessment packages to support safety planning, repair prioritization, and long-term reconstruction.

Result / Outcome

  • Demonstrated a highly successful rapid mobilization capability in an active disaster zone, delivering critical datasets within the necessary timeframe.

  • Provided local authorities and stakeholders with the definitive, actionable assessments required to secure immediate safety funding, prioritize repairs, and accelerate community recovery.

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