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A transportation network assessment tool for hazardous material cargo routing: Weighing exposure health risks,proximity to vulnerable areas,delay costs and trucking expenses
Institution:1. Instituto Militar de Engenharia, Seção de Ensino de Engenharia de Computação, Praça General Tibúrcio, 80, Praia Vermelha, 22290-270, Rio de Janeiro, RJ, Brazil;2. Programa de Engenharia de Sistemas e Computação, Universidade Federal do Rio de Janeiro, Caixa Postal 68511, 21941-972, Rio de Janeiro, RJ, Brazil;3. Instituto Militar de Engenharia Programa de pós-graduação em Engenharia de Defesa, Praça General Tibúrcio, 80, Praia Vermelha, 22290-270, Rio de Janeiro, RJ, Brazil;1. School of Systems Information Science, Future University Hakodate, Hakodate 0418655, Japan;2. School of Information and technology, Kunming University, Kunming 650214, PR China;3. School of Computer and Information Engineering, Chuzhou University, Chuzhou 239000, PR China;4. School of Computer Science, Shaanxi Normal University, Xi’an 710119, PR China
Abstract:The inherent risks associated with accidental releases of hazardous materials during transport have drawn attention and concerns in the recent decades. The aim of this study is to propose a tool for evaluation and comparison of the transportation networks which can be used to assess the routing options between origins and destinations of the cargos for their suitability for transporting hazardous material cargos by tanker trucks and to identify routes which provide lower accidental release risks, lower public exposure risks, and offer economical benefits. Each route segment of transportation networks were evaluated using specific criteria which included health risk and cost of delay in case of an accidental release of materials, trucking cost and proximity to vulnerable areas. Since, the health impact of hazardous materials differ depending on the characteristics of the material being transported as well as release quantities and atmospheric conditions; this paper aimed in providing a tool that can be used to estimate the impact radius (for health risks) after accidental release of hazardous materials by taking into account different atmospheric conditions based on the meteorological data and solar elevation angle. The Gaussian air dispersion model paired with ArcGIS using Python programming were employed to estimate the health risk impact zones by considering the meteorological data, and accordingly to analyze road segments for cost impacts (delay and trucking costs), and the proximity to vulnerable areas. The route assessment tool was demonstrated with a case study. The results of this study can efficiently aid decision makers for transportation of hazardous materials.
Keywords:Hazardous material routing  Transportation network  Health risk analysis  Cost of delay  Travel cost
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