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International Journal of Wildland Fire International Journal of Wildland Fire Society
Journal of the International Association of Wildland Fire
RESEARCH ARTICLE

Modelling evacuation decision-making in the 2016 Chimney Tops 2 fire in Gatlinburg, TN

Erica D. Kuligowski A D , Emily H. Walpole A , Ruggiero Lovreglio https://orcid.org/0000-0003-4596-7656 B and Sarah McCaffrey C
+ Author Affiliations
- Author Affiliations

A National Institute of Standards and Technology (NIST), 100 Bureau Drive, Gaithersburg, MD 20899, USA.

B Massey University Auckland, Private Bag 102904, North Shore, Auckland 0745, New Zealand.

C Rocky Mountain Research Station, USDA Forest Service, 240 West Prospect Road, Fort Collins, CO 80526, USA.

D Corresponding author. Email: ericakuligowski@gmail.com

International Journal of Wildland Fire 29(12) 1120-1132 https://doi.org/10.1071/WF20038
Submitted: 21 March 2020  Accepted: 3 August 2020   Published: 2 September 2020

Abstract

As wildfires occurring at the wildland–urban interface (WUI) continue to become more severe, there is an increasing need to understand human behaviour in these situations, and evacuation decision-making in particular. To contribute to this understanding, an online survey (using both mail and online sampling methods) was disseminated to households impacted by the 2016 Chimney Tops 2 fire in Tennessee. The survey instrument measured pre-event variables such as awareness of fire risks and previous experience with evacuations as well as the types of warnings and fire cues received during the event, with a focus on factors known to impact evacuation decisions and risk perception. Using linear and logistic regression analyses, it was found that fire cues and receiving warnings from a trusted source influenced risk perceptions leading up to an evacuation decision. In line with the Protective Action Decision Model, risk perception also highly influenced evacuation decisions, along with other variables, i.e. gender and prior preparation actions. Results from this work provide support for findings from previous wildfire evacuation research as well as produce some novel findings, along with several methodological recommendations, which will be further explored.

Additional keywords: egress modelling, evacuation, wildfires, WUI.


References

Aguirre BE, Wenger D, Vigo G (1998) A test of the emergent norm theory of collective behavior. Sociological Forum 13, 301–320.
A test of the emergent norm theory of collective behavior.Crossref | GoogleScholarGoogle Scholar |

Bateman JM, Edwards B (2002) Gender and evacuation: a closer look at why women are more likely to evacuate for hurricanes. Natural Hazards Review 3, 107–117.
Gender and evacuation: a closer look at why women are more likely to evacuate for hurricanes.Crossref | GoogleScholarGoogle Scholar |

Benight CC, Gruntfest E, Sparks K (2004) Colorado wildfires 2002. Natural Hazards Center, Quick Response Research Report 167. (Boulder, CO, USA)

Blanchi R, Whittaker J, Haynes K, Leonard J, Opie K (2018) Surviving bushfire: the role of shelters and sheltering practices during the Black Saturday bushfires. Environmental Science & Policy 81, 86–94.
Surviving bushfire: the role of shelters and sheltering practices during the Black Saturday bushfires.Crossref | GoogleScholarGoogle Scholar |

Cohn PJ, Carroll MS, Kumagai Y (2006) Evacuation behavior during wildfires: results of three case studies. Western Journal of Applied Forestry 21, 39–48.
Evacuation behavior during wildfires: results of three case studies.Crossref | GoogleScholarGoogle Scholar |

DeVellis RF (2012) ‘Scale development: theory and applications.’ (SAGE Publications: Chapel Hill, NC).

Dow K, Cutter SL (1998) Crying wolf: repeat responses to hurricane evacuation orders. Coastal Management 26, 237–252.
Crying wolf: repeat responses to hurricane evacuation orders.Crossref | GoogleScholarGoogle Scholar |

Eriksen C, Gill N, Head L (2010) The gendered dimensions of bushfire in changing rural landscapes in Australia. Journal of Rural Studies 26, 332–342.
The gendered dimensions of bushfire in changing rural landscapes in Australia.Crossref | GoogleScholarGoogle Scholar |

Fischhoff B (1975) Hindsight is not equal to foresight: the effect of outcome knowledge on judgment under uncertainty. Journal of Experimental Psychology. Human Perception and Performance 1, 288–299.
Hindsight is not equal to foresight: the effect of outcome knowledge on judgment under uncertainty.Crossref | GoogleScholarGoogle Scholar |

Folk LH, Kuligowski ED, Gwynne SMV, Gales JA (2019) A provisional conceptual model of human behavior in response to wildland–urban interface fires. Fire Technology 55, 1619–1647.
A provisional conceptual model of human behavior in response to wildland–urban interface fires.Crossref | GoogleScholarGoogle Scholar |

Friedman J, Hastie T, Tibshirani R (2010) Regularization paths for generalized linear models via coordinate descent. Journal of Statistical Software 33, 1–22.
Regularization paths for generalized linear models via coordinate descent.Crossref | GoogleScholarGoogle Scholar | 20808728PubMed |

Gershon R, Qureshi K, Rubin M, Raveis V (2007) Factors associated with high-rise evacuation: qualitative results from the World Trade Center evacuation study. Prehospital and Disaster Medicine 22, 165–173.
Factors associated with high-rise evacuation: qualitative results from the World Trade Center evacuation study.Crossref | GoogleScholarGoogle Scholar | 17894208PubMed |

Guthrie VH, Finucane MJ, Keith PE, Stinnett DB (2017) After-action review of the November 28, 2016, Firestorm. 164. (ABSG Consulting Inc.: Houston, TX)

Huang S-K, Lindell MK, Prater CS (2017) Multistage model of hurricane evacuation decision: empirical study of Hurricanes Katrina and Rita. Natural Hazards Review 18, 05016008
Multistage model of hurricane evacuation decision: empirical study of Hurricanes Katrina and Rita.Crossref | GoogleScholarGoogle Scholar |

Jolly WM, Cochrane MA, Freeborn PH, Holden ZA, Brown TJ, Williamson GJ, Bowman DMJS (2015) Climate-induced variations in global wildfire danger from 1979 to 2013. Nature Communications 6, 7537
Climate-induced variations in global wildfire danger from 1979 to 2013.Crossref | GoogleScholarGoogle Scholar | 26172867PubMed |

Kuligowski ED (2011) Terror defeated: occupant sensemaking, decision-making and protective action in the 2001 World Trade Center Disaster. PhD dissertation, University of Colorado at Boulder, Boulder, CO.

Kuligowski E (2013) Predicting human behavior during fires. Fire Technology 49, 101–120.
Predicting human behavior during fires.Crossref | GoogleScholarGoogle Scholar |

Kuligowski E (2015) Model building: an examination of the pre-evacuation period of the 2001 World Trade Center disaster. Fire and Materials 39, 285–300.
Model building: an examination of the pre-evacuation period of the 2001 World Trade Center disaster.Crossref | GoogleScholarGoogle Scholar |

Kuligowski ED, Doermann J (2018) A review of public response to short message alerts under imminent threat. National Institute of Standards and Technology, NIST Technical Note 1982. (Gaithersburg, MD, USA) 10.6028/NIST.TN.1982

Kuligowski E (2020) Evacuation decision-making and behavior in wildfires: Past research, current challenges and a future research agenda. Fire Safety Journal
Evacuation decision-making and behavior in wildfires: Past research, current challenges and a future research agenda.Crossref | GoogleScholarGoogle Scholar |

Lindell MK (2017) Communicating imminent risk. In ‘Handbook of disaster research’. (Eds H Rodríguez, W Donner, JE Trainor) pp. 449–477. (Springer International Publishing: Cham, Switzerland).

Lindell MK, Perry RW (2012) The Protective Action Decision Model: theoretical modifications and additional evidence. Risk Analysis 32, 616–632.
The Protective Action Decision Model: theoretical modifications and additional evidence.Crossref | GoogleScholarGoogle Scholar | 21689129PubMed |

Liu Y, Stanturf J, Goodrick S (2010) Trends in global wildfire potential in a changing climate. Forest Ecology and Management 259, 685–697.
Trends in global wildfire potential in a changing climate.Crossref | GoogleScholarGoogle Scholar |

McCaffrey S, Winter G (2011) Understanding homeowner preparation and intended actions when threatened by a wildfire. In ‘Proceedings of the second conference on the human dimensions of wildland fire’, 27–29 April 2010, San Antonio, TX. (Eds SM McCaffrey, C LeBlanc Fisher) USDA Forest Service, Northern Research Station, General Technical Report NRS-P-84, pp. 88–95. (Newtown Square, PA, USA)

McCaffrey S, Wilson R, Konar A (2018) Should I stay or should I go now? Or should I wait and see? Influences on wildfire evacuation decisions. Risk Analysis 38, 1390–1404.
Should I stay or should I go now? Or should I wait and see? Influences on wildfire evacuation decisions.Crossref | GoogleScholarGoogle Scholar | 29168989PubMed |

McLennan J (2014) Capturing community members’ bushfire experiences: interviews with residents following the 12 January 2014 Parkerville (WA) fire. Bushfire & Natural Hazards Cooperative Research Centre, Report No. 2014.005. (Melbourne, Vic., Australia)

McLennan J, Elliott G, Omodei M (2011) Issues in community bushfire safety: analyses of interviews conducted by the 2009 Victorian Bushfires Research Task Force. Report number 4: 2011. 53 pp. (Bushfire CRC and School of Psychological Science, La Trobe University, Bundoora, Australia)

McLennan J, Elliott G, Omodei M (2012) Householder decision-making under imminent wildfire threat: stay and defend or leave? International Journal of Wildland Fire 21, 915–925.
Householder decision-making under imminent wildfire threat: stay and defend or leave?Crossref | GoogleScholarGoogle Scholar |

McLennan J, Elliott G, Omodei M, Whittaker J (2013) Householders’ safety-related decisions, plans, actions and outcomes during the 7 February 2009 Victorian (Australia) wildfires. Fire Safety Journal 61, 175–184.
Householders’ safety-related decisions, plans, actions and outcomes during the 7 February 2009 Victorian (Australia) wildfires.Crossref | GoogleScholarGoogle Scholar |

McLennan J, Cowlishaw S, Paton D, Beatson R, Elliott G (2014) Predictors of south-eastern Australian householders’ strengths of intentions to self-evacuate if a wildfire threatens: two theoretical models. International Journal of Wildland Fire 23, 1176–1188.
Predictors of south-eastern Australian householders’ strengths of intentions to self-evacuate if a wildfire threatens: two theoretical models.Crossref | GoogleScholarGoogle Scholar |

McLennan J, Paton D, Beatson R (2015) Psychological differences between south-eastern Australian householders’ who intend to leave if threatened by a wildfire and those who intend to stay and defend. International Journal of Disaster Risk Reduction 11, 35–46.
Psychological differences between south-eastern Australian householders’ who intend to leave if threatened by a wildfire and those who intend to stay and defend.Crossref | GoogleScholarGoogle Scholar |

McLennan J, Ryan B, Bearman C, Toh K (2019) Should we leave now? Behavioral factors in evacuation under wildfire threat. Fire Technology 55, 487–516.
Should we leave now? Behavioral factors in evacuation under wildfire threat.Crossref | GoogleScholarGoogle Scholar |

McNeill IM, Dunlop PD, Skinner TC, Morrison DL (2016) A value- and expectancy-based approach to understanding residents’ intended response to a wildfire threat. International Journal of Wildland Fire 25, 378–389.
A value- and expectancy-based approach to understanding residents’ intended response to a wildfire threat.Crossref | GoogleScholarGoogle Scholar |

Mileti D, Fitzpatrick C (1992) The causal sequence of risk communication in the Parkfield Earthquake prediction experiment. Risk Analysis 12, 393–400.
The causal sequence of risk communication in the Parkfield Earthquake prediction experiment.Crossref | GoogleScholarGoogle Scholar |

Mozumder P, Raheem N, Talberth J, Berrens RP (2008) Investigating intended evacuation from wildfires in the wildland–urban interface: application of a bivariate probit model. Forest Policy and Economics 10, 415–423.
Investigating intended evacuation from wildfires in the wildland–urban interface: application of a bivariate probit model.Crossref | GoogleScholarGoogle Scholar |

National Park Service (2017) Chimney Tops 2 Fire review: individual fire review report. 116 pp. (National Park Service, US Department of the Interior, Division of Fire and Aviation, Boise, ID, USA)

Omori H, Kuligowski ED, Gwynne SMV, Butler KM (2017) Human response to emergency communication: a review of guidance on alerts and warning messages for emergencies in buildings. Fire Technology 53, 1641–1668.
Human response to emergency communication: a review of guidance on alerts and warning messages for emergencies in buildings.Crossref | GoogleScholarGoogle Scholar |

Paveglio T, Prato T, Dalenberg D, Venn T (2014) Understanding evacuation preferences and wildfire mitigations among north-west Montana residents. International Journal of Wildland Fire 23, 435–444.
Understanding evacuation preferences and wildfire mitigations among north-west Montana residents.Crossref | GoogleScholarGoogle Scholar |

Riad JK, Norris FH, Ruback RB (1999) Predicting evacuation in two major disasters: risk perception, social influence, and access to resources. Journal of Applied Social Psychology 29, 918–934.
Predicting evacuation in two major disasters: risk perception, social influence, and access to resources.Crossref | GoogleScholarGoogle Scholar |

Sorensen JH, Mileti DS (2018) Warning issuance, diffusion, and public protective action initiation during the February 2017 Oroville Dam event. US Army Corps of Engineers. (Davis, CA, USA)

Sorensen JH, Sorensen BV, Smith A, Williams Z (2009) Results of an investigation of the effectiveness of using reverse telephone emergency warning systems in the October 2007 San Diego Wildfires. Oak Ridge National Laboratory, Report no. ORNL/TM-2009/154. (Oak Ridge, TN, USA)

Steelman TA, McCaffrey SM, Velez A-LK, Briefel JA (2015) What information do people use, trust, and find useful during a disaster? Evidence from five large wildfires. Natural Hazards 76, 615–634.
What information do people use, trust, and find useful during a disaster? Evidence from five large wildfires.Crossref | GoogleScholarGoogle Scholar |

Strahan K, Whittaker J, Handmer J (2018) Self-evacuation archetypes in Australian bushfire. International Journal of Disaster Risk Reduction 27, 307–316.
Self-evacuation archetypes in Australian bushfire.Crossref | GoogleScholarGoogle Scholar |

Strahan KW, Whittaker J, Handmer J (2019) Predicting self-evacuation in Australian bushfire. Environmental Hazards 18, 146–172.
Predicting self-evacuation in Australian bushfire.Crossref | GoogleScholarGoogle Scholar |

Strawderman L, Salehi A, Babski-Reeves K, Thornton-Neaves T, Cosby A (2012) Reverse 911 as a complementary evacuation warning system. Natural Hazards Review 13, 65–73.
Reverse 911 as a complementary evacuation warning system.Crossref | GoogleScholarGoogle Scholar |

Sutton J, Kuligowski ED (2019) Alerts and warnings on short messaging channels: guidance from an expert panel process. Natural Hazards Review 20, 04019002
Alerts and warnings on short messaging channels: guidance from an expert panel process.Crossref | GoogleScholarGoogle Scholar |

Tibbits A, Whittaker J (2007) Stay and defend or leave early: policy problems and experiences during the 2003 Victorian bushfires. Environmental Hazards 7, 283–290.
Stay and defend or leave early: policy problems and experiences during the 2003 Victorian bushfires.Crossref | GoogleScholarGoogle Scholar |

Tibshirani R (1996) Regression shrinkage and selection via the lasso. Journal of the Royal Statistical Society. Series B. Methodological 58, 267–288.
Regression shrinkage and selection via the lasso.Crossref | GoogleScholarGoogle Scholar |

Trainor JE, Nagele D, Philips B, Scott B (2015) Tornadoes, social science, and the false alarm effect. Weather, Climate, and Society 7, 333–352.
Tornadoes, social science, and the false alarm effect.Crossref | GoogleScholarGoogle Scholar |

Turner RH, Killian LM (1972) ‘Collective behavior.’ (Prentice-Hall: Englewood Cliffs, NJ)

United States Census Bureau (2018) Sevier County, Tennessee. Available at: https://data.census.gov/cedsci/profile?q=Sevier%20County,%20Tennessee&g=0500000US47155&tid=ACSDP1Y2018.DP05 [Verified 15 July 2020]

Whittaker J, Handmer J (2010) Review of key bushfire research findings. Report number WIT.3007.001.0041. (Centre for Risk and Community Safety, School of Mathematical and Geospatial Sciences, RMIT University, Melbourne, Australia)

Whittaker J, Eriksen C, Haynes K (2016) Gendered responses to the 2009 Black Saturday bushfires in Victoria, Australia. Geographical Research 54, 203–215.
Gendered responses to the 2009 Black Saturday bushfires in Victoria, Australia.Crossref | GoogleScholarGoogle Scholar |