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Probabilistic classification of hazardous materials release events in train incidents and cargo tank truck crashes

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  • Iranitalab, Amirfarrokh
  • Khattak, Aemal

Abstract

As two of the main modes of hazmat surface transportation, quantifying conditional probability of release of hazmat from trains in rail incidents and Cargo Tank Trucks (CTTs) in highway crashes is an important component of risk assessment. The objective of this study was identifying computational tools with reliable performance for quantifying probability of hazmat release in train incidents and CTT crashes, based on the type of the decision-making problem. Events of release of hazmat were probabilistically classified by statistical and machine learning methods (Mixed Logistic Regression, Naïve Bayes, Random Forests, and Support Vector Machines) using relevant explanatory variables. The datasets were Federal Railroad Administration rail equipment incident data, and combined Nebraska and Kansas police-reported traffic crash data. Given the rarity of these events, the classification performance of different methods was compared based on precision, recall and area under ROC curves (AUC). Random Forests had the best performance in classifying hazmat release for trains and railcars, based on different criteria. For CTTs, Support Vector Machines and Random Forests had the highest precision, while logistic regression and naïve Bayes performed better based on recall and AUC. The research provides recommendations regarding usage of the methods depending on the purpose of analysis.

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  • Iranitalab, Amirfarrokh & Khattak, Aemal, 2020. "Probabilistic classification of hazardous materials release events in train incidents and cargo tank truck crashes," Reliability Engineering and System Safety, Elsevier, vol. 199(C).
  • Handle: RePEc:eee:reensy:v:199:y:2020:i:c:s0951832019308932
    DOI: 10.1016/j.ress.2020.106914
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    References listed on IDEAS

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    1. Romero, Natalia & Nozick, Linda K. & Xu, Ningxiong, 2016. "Hazmat facility location and routing analysis with explicit consideration of equity using the Gini coefficient," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 89(C), pages 165-181.
    2. Iranitalab, Amirfarrokh & Khattak, Aemal & Thompson, Eric, 2019. "Statistical modeling of types and consequences of rail-based crude oil release incidents in the United States," Reliability Engineering and System Safety, Elsevier, vol. 185(C), pages 232-239.
    3. Jiashan Wang & Yingying Kang & Changhyun Kwon & Rajan Batta, 2012. "Dual Toll Pricing for Hazardous Materials Transport with Linear Delay," Networks and Spatial Economics, Springer, vol. 12(1), pages 147-165, March.
    4. George F. List & Pitu B. Mirchandani & Mark A. Turnquist & Konstantinos G. Zografos, 1991. "Modeling and Analysis for Hazardous Materials Transportation: Risk Analysis, Routing/Scheduling and Facility Location," Transportation Science, INFORMS, vol. 25(2), pages 100-114, May.
    5. Verma, Manish & Verter, Vedat & Zufferey, Nicolas, 2012. "A bi-objective model for planning and managing rail-truck intermodal transportation of hazardous materials," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 48(1), pages 132-149.
    6. Morteza Bagheri & Manish Verma & Vedat Verter, 2014. "Transport Mode Selection for Toxic Gases: Rail or Road?," Risk Analysis, John Wiley & Sons, vol. 34(1), pages 168-186, January.
    7. Hemmatian, Behrouz & Planas, Eulà lia & Casal, Joaquim, 2015. "Fire as a primary event of accident domino sequences: The case of BLEVE," Reliability Engineering and System Safety, Elsevier, vol. 139(C), pages 141-148.
    8. Godoy, S.M. & Santa Cruz, A.S.M. & Scenna, N.J., 2007. "STRRAP system—A software for hazardous materials risk assessment and safe distances calculation," Reliability Engineering and System Safety, Elsevier, vol. 92(7), pages 847-857.
    9. Patrice Marcotte & Anne Mercier & Gilles Savard & Vedat Verter, 2009. "Toll Policies for Mitigating Hazardous Materials Transport Risk," Transportation Science, INFORMS, vol. 43(2), pages 228-243, May.
    10. Scenna, N.J. & Santa Cruz, A.S.M., 2005. "Road risk analysis due to the transportation of chlorine in Rosario city," Reliability Engineering and System Safety, Elsevier, vol. 90(1), pages 83-90.
    11. Bahar Y. Kara & Vedat Verter, 2004. "Designing a Road Network for Hazardous Materials Transportation," Transportation Science, INFORMS, vol. 38(2), pages 188-196, May.
    12. Vedat Verter & Bahar Y. Kara, 2008. "A Path-Based Approach for Hazmat Transport Network Design," Management Science, INFORMS, vol. 54(1), pages 29-40, January.
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