Using Deep Learning and Advanced Image Processing for the Automated Estimation of Tornado-Induced Treefall

Author:

Nasimi Mitra1ORCID,Wood Richard L.1ORCID

Affiliation:

1. Department Civil and Environmental Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588, USA

Abstract

Each year, numerous tornadoes occur in forested regions of the United States. Due to the substantial number of fallen trees and accessibility issues, many of these tornadoes remain poorly documented and evaluated. The process of documenting tree damage to assess tornado intensity is known as the treefall method, an established and reliable technique for estimating near-surface wind speed. Consequently, the demand for documenting fallen trees has increased in recent years. However, the treefall method proves to be extremely expensive and time-consuming, requiring a laborious assessment of each treefall instance. This research proposes a novel approach to evaluating treefall in large, forested regions using deep learning-based automated detection and advanced image processing techniques. The developed treefall method relies on high-resolution aerial imagery from a damaged forest and involves three main steps: (1) instance segmentation detection, (2) estimating tree taper and predicting fallen tree directions, and (3) obtaining subsampled treefall vector results indicating the predominant flow direction in geospatial coordinates. To demonstrate the method’s effectiveness, the algorithm was applied to a tornado track rated EF-4, which occurred on 10 December 2021, cutting through the Land Between the Lakes National Recreation Area in Kentucky. Upon observation of the predicted results, the model is demonstrated to accurately predict the predominant treefall angles. This deep-learning-based treefall algorithm has the potential to speed up data processing and facilitate the application of treefall methods in tornado evaluation.

Funder

National Science Foundation

Northern Tornadoes Project

Publisher

MDPI AG

Reference53 articles.

1. (2024, January 26). November 2023 Tornadoes Report|National Centers for Environmental Information (NCEI), Available online: https://www.ncei.noaa.gov/access/monitoring/monthly-report/tornadoes/202213.

2. (2024, January 26). U.S. Economic Damage Caused by Tornadoes 2022|Statista. Available online: https://www.statista.com/statistics/237409/economic-damage-caused-by-tornadoes-in-us/.

3. Dual-Objective-Based Tornado Design Philosophy;Pei;J. Struct. Eng.,2013

4. De-aggregation of community resilience goals to obtain minimum performance objectives for buildings under tornado hazards;Wang;Struct. Saf.,2018

5. The strongest winds in tornadoes are very near the ground;Kosiba;Commun. Earth Environ.,2023

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