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A decision support system for integrated hazardous materials routing and emergency response decisions

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A decision support system for integrated hazardous materials routing and emergency response decisions. / Zografos, Konstantinos; Androutsopoulos, Konstantinos N.
In: Transportation Research Part C: Emerging Technologies, Vol. 16, No. 6, 12.2008, p. 684-703.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Zografos, K & Androutsopoulos, KN 2008, 'A decision support system for integrated hazardous materials routing and emergency response decisions', Transportation Research Part C: Emerging Technologies, vol. 16, no. 6, pp. 684-703. https://doi.org/10.1016/j.trc.2008.01.004

APA

Zografos, K., & Androutsopoulos, K. N. (2008). A decision support system for integrated hazardous materials routing and emergency response decisions. Transportation Research Part C: Emerging Technologies, 16(6), 684-703. https://doi.org/10.1016/j.trc.2008.01.004

Vancouver

Zografos K, Androutsopoulos KN. A decision support system for integrated hazardous materials routing and emergency response decisions. Transportation Research Part C: Emerging Technologies. 2008 Dec;16(6):684-703. Epub 2008 Mar 21. doi: 10.1016/j.trc.2008.01.004

Author

Zografos, Konstantinos ; Androutsopoulos, Konstantinos N. / A decision support system for integrated hazardous materials routing and emergency response decisions. In: Transportation Research Part C: Emerging Technologies. 2008 ; Vol. 16, No. 6. pp. 684-703.

Bibtex

@article{5d0b635df0304a3b969e86a3cd97a5c2,
title = "A decision support system for integrated hazardous materials routing and emergency response decisions",
abstract = "Hazardous materials routing constitutes a critical decision in mitigating the associated transportation risk. This paper presents a decision support system for assessing alternative distribution routes in terms of travel time, risk and evacuation implications while coordinating the emergency response deployment decisions with the hazardous materials routes. The proposed system provides the following functionalities: (i) determination of alternative non-dominated hazardous materials distribution routes in terms of cost and risk minimization, (ii) specification of the hazardous materials first-response emergency service units locations in order to achieve timely response to an accident, and (iii) determination of evacuation paths from the impacted area to designated shelters and estimation of the associated evacuation time. The proposed system has been implemented, used and evaluated for assessing alternative hazardous materials routing decisions within the heavily industrialized area of Thriasion Pedion of Attica, Greece. The implementation of the aforementioned functionalities is based on two new integer programming models for the hazardous materials routing and the emergency response units location problems, respectively. A simplified version of the routing model is solved by an existing heuristic algorithm developed by the authors. A new Lagrangean relaxation heuristic algorithm has been developed for solving the emergency response units location problem. The focus of this paper is on the exposition of the proposed decision support system components and functionalities. Special emphasis is placed on the presentation of the two new mathematical models and the new solution method for the location model.",
keywords = "Decision support system, Bi-objective routing and scheduling, Emergency response service deployment, Hazardous materials",
author = "Konstantinos Zografos and Androutsopoulos, {Konstantinos N.}",
year = "2008",
month = dec,
doi = "10.1016/j.trc.2008.01.004",
language = "English",
volume = "16",
pages = "684--703",
journal = "Transportation Research Part C: Emerging Technologies",
issn = "0968-090X",
publisher = "PERGAMON-ELSEVIER SCIENCE LTD",
number = "6",

}

RIS

TY - JOUR

T1 - A decision support system for integrated hazardous materials routing and emergency response decisions

AU - Zografos, Konstantinos

AU - Androutsopoulos, Konstantinos N.

PY - 2008/12

Y1 - 2008/12

N2 - Hazardous materials routing constitutes a critical decision in mitigating the associated transportation risk. This paper presents a decision support system for assessing alternative distribution routes in terms of travel time, risk and evacuation implications while coordinating the emergency response deployment decisions with the hazardous materials routes. The proposed system provides the following functionalities: (i) determination of alternative non-dominated hazardous materials distribution routes in terms of cost and risk minimization, (ii) specification of the hazardous materials first-response emergency service units locations in order to achieve timely response to an accident, and (iii) determination of evacuation paths from the impacted area to designated shelters and estimation of the associated evacuation time. The proposed system has been implemented, used and evaluated for assessing alternative hazardous materials routing decisions within the heavily industrialized area of Thriasion Pedion of Attica, Greece. The implementation of the aforementioned functionalities is based on two new integer programming models for the hazardous materials routing and the emergency response units location problems, respectively. A simplified version of the routing model is solved by an existing heuristic algorithm developed by the authors. A new Lagrangean relaxation heuristic algorithm has been developed for solving the emergency response units location problem. The focus of this paper is on the exposition of the proposed decision support system components and functionalities. Special emphasis is placed on the presentation of the two new mathematical models and the new solution method for the location model.

AB - Hazardous materials routing constitutes a critical decision in mitigating the associated transportation risk. This paper presents a decision support system for assessing alternative distribution routes in terms of travel time, risk and evacuation implications while coordinating the emergency response deployment decisions with the hazardous materials routes. The proposed system provides the following functionalities: (i) determination of alternative non-dominated hazardous materials distribution routes in terms of cost and risk minimization, (ii) specification of the hazardous materials first-response emergency service units locations in order to achieve timely response to an accident, and (iii) determination of evacuation paths from the impacted area to designated shelters and estimation of the associated evacuation time. The proposed system has been implemented, used and evaluated for assessing alternative hazardous materials routing decisions within the heavily industrialized area of Thriasion Pedion of Attica, Greece. The implementation of the aforementioned functionalities is based on two new integer programming models for the hazardous materials routing and the emergency response units location problems, respectively. A simplified version of the routing model is solved by an existing heuristic algorithm developed by the authors. A new Lagrangean relaxation heuristic algorithm has been developed for solving the emergency response units location problem. The focus of this paper is on the exposition of the proposed decision support system components and functionalities. Special emphasis is placed on the presentation of the two new mathematical models and the new solution method for the location model.

KW - Decision support system

KW - Bi-objective routing and scheduling

KW - Emergency response service deployment

KW - Hazardous materials

U2 - 10.1016/j.trc.2008.01.004

DO - 10.1016/j.trc.2008.01.004

M3 - Journal article

VL - 16

SP - 684

EP - 703

JO - Transportation Research Part C: Emerging Technologies

JF - Transportation Research Part C: Emerging Technologies

SN - 0968-090X

IS - 6

ER -