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March 6, 2026Transportation Research Interdisciplinary Perspectives0 citationsOpen Access

A Multi-Source Reconstruction of the 2024 Jasper Wildfire Complex Evacuation and Reentry Periods

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IBIan BorodyMKMax KinatederNBN. Bénichou

Key Points

  • This research aims to analyze the evacuation and reentry periods during the 2024 Jasper Wildfire using multiple data sources.
  • Utilized network mobility data from TELUS Data for Good Program.
  • Incorporated open-source traffic counts from the Alberta Government.
  • Analyzed official government correspondence on social media platforms.
  • Compared evacuation departure curves with Poisson, logistic, and Rayleigh functions.
  • Evacuation took eight hours with a peak flow of 800 vehicles per hour on a single-lane highway.
  • A steady departure rate of 2,000 devices per hour was established.
  • Reentry occurred over several weeks, highlighting the need for community resources.
  • Consistent findings between mobility data and traffic counts validate the data sources used.

Abstract

• Jasper (Canada) was evacuated for twenty-four days due to a severe wildfire in 2024. • Events were reconstructed via network mobility data, traffic counts, and social media. • Transportation network characteristics severely constrained evacuation flow. • The evacuation of Jasper took eight hours, and reentry lasted for multiple weeks. • Evacuation departure curves were similar to Poisson, logistic, and Rayleigh functions. Wildfire events pose extreme danger to residents, requiring evacuations to safety. To better inform evacuation planning, a post-disaster reconstruction of events using multiple sources can identify emergent travel behaviour, evacuation time estimates (ETEs), departure timings, and flow characteristics. In this study, the 2024 Jasper Wildfire Complex was reconstructed with de-identified network mobility data from the TELUS Data for Good Program, open-source traffic counts from the Alberta Government, and official government correspondence via social media platforms. By leveraging unique insights from three different data sources, we develop a more complete understanding of the evacuation across the entire duration of the wildfire compared to single-source studies. The results found value in operating a unified command between municipalities and counties, a peak hours-long evacuation flow estimate of 800 vehicles per hour on a one-lane rural highway, and a steady rate of 2,000 device departures per hour that best matched Poisson, logistic, and Rayleigh functions. The evacuation of the Jasper area was estimated to take eight hours, limited by the single-lane egress route, indicating that a combination of transportation strategies is required for timing reductions in similar jurisdictions. A slow, weeks-long rate of return was observed during reentry, indicating the importance of long-term community supports and resources. Positively, strong similarities between network mobility data and traffic counts showcase their data validity in investigating future evacuation events. The results are most applicable to rural communities with a single egress route and a similar hazard context as Jasper.

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Cite This Study

Borody et al. (2026) studied this question.

synapsesocial.com/papers/69aa7037531e4c4a9ff59d26https://doi.org/10.1016/j.trip.2026.101861
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