Hurricane Ian Damage Assessment Using Aerial Imagery and LiDAR: A Case Study of Estero Island, Florida

Author:

Hauptman Leanne1ORCID,Mitsova Diana2ORCID,Briggs Tiffany Roberts1

Affiliation:

1. Department of Geosciences, Florida Atlantic University, Boca Raton, FL 33431, USA

2. Department of Urban and Regional Planning, Florida Atlantic University, Boca Raton, FL 33431, USA

Abstract

Remote sensing techniques have emerged as an essential tool for conducting damage assessments and are commonly used to improve disaster recovery planning and community resilience policies. The objective of this study was to use aerial imagery data and LiDAR to identify the hardest hit areas, quantify the extent of damages, and compare pre- and post-storm beach morphology conditions in Estero Island, Florida, relating to Hurricane Ian in 2022. This study identified >2400 structures that were impacted by Hurricane Ian, with 170 structures suffering extensive damage. Clustering of heavily damaged buildings was observed on the northern and central portions of the island, with lower levels of damage clustered on the southern part. Among the ‘severely damaged’ and ‘destroyed’ structures were seven mobile home subdivisions. The total assessed value of the heavily damaged structures was estimated at over USD 200 million. The results also indicated substantial post-storm debris and sand deposition across the entire island. Remote sensing provides advanced techniques that can help prioritize emergency response efforts after catastrophic impacts from a natural disaster.

Publisher

MDPI AG

Reference44 articles.

1. NOAA (2023, December 15). Monthly National Climate Report for September, Available online: https://www.ncei.noaa.gov/access/monitoring/monthly-report/national/202209#:~:text=The%20contiguous%20U.S.%20average%20maximum,parts%20of%20the%20East%20Coast.

2. USGS (2023, September 15). Hurricane Ian’s Scientific Silver Lining. Coastal and Marine Hazards and Resources Program, Available online: https://www.usgs.gov/programs/cmhrp/news/hurricane-ians-scientific-silver-lining#:~:text=%E2%80%9CWhile%20Hurricane%20Ian%20was%20undoubtedly,better%20prepared%20for%20future%20disasters.%E2%80%9D.

3. Lee County (2023, September 15). Ian Progress Report, Available online: https://ianprogress.leegov.com/.

4. The geological effect of hurricane Danna in Southern Florida;Ball;J. Geol.,1967

5. Image-Based 3D Reconstruction for Post-hurricane Residential Building Damage Assessment;Zhou;J. Comput. Civ. Eng.,2016

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