There is a rich literature, mainly developed in the last two decades, about risk reduction in transport system in emergency conditions. One of the challenges regards the development of ad-hoc transport system models (TSMs) in order to simulate emergency conditions. The paper focuses on the supply (network) component of the TSMs. The general objective of the research is the development of a framework capable to capture the relevant changes of the network from the ordinary conditions, due to an approaching calamitous event. The research will consider non-stationary conditions in transport supply models for continuous services. In relation to the consolidated static models, this evolution is necessary to capture the dynamics of the transportation network during the evacuation in terms of both topology (e.g. link closure, contraflow) and capacity of the links and of the network. The concept of learning process will be introduced to take into account how the transport costs (disutilities) in ordinary and emergency conditions will be perceived by the users.

RISK REDUCTION IN TRANSPORT SYSTEM IN EMERGENCY CONDITIONS: A FRAMEWORK FOR SUPPLY ANALYSIS / Musolino, G.. - 206:(2021), pp. 275-284. (9th International Conference on Safety and Security Engineering, SAFE 2021 ita 2021) [10.2495/SAFE210231].

RISK REDUCTION IN TRANSPORT SYSTEM IN EMERGENCY CONDITIONS: A FRAMEWORK FOR SUPPLY ANALYSIS

Musolino Giuseppe
2021-01-01

Abstract

There is a rich literature, mainly developed in the last two decades, about risk reduction in transport system in emergency conditions. One of the challenges regards the development of ad-hoc transport system models (TSMs) in order to simulate emergency conditions. The paper focuses on the supply (network) component of the TSMs. The general objective of the research is the development of a framework capable to capture the relevant changes of the network from the ordinary conditions, due to an approaching calamitous event. The research will consider non-stationary conditions in transport supply models for continuous services. In relation to the consolidated static models, this evolution is necessary to capture the dynamics of the transportation network during the evacuation in terms of both topology (e.g. link closure, contraflow) and capacity of the links and of the network. The concept of learning process will be introduced to take into account how the transport costs (disutilities) in ordinary and emergency conditions will be perceived by the users.
2021
Inglese
G. Passerini, Marche Polytechnic University, Italy; F. Garzia and M. Lombardi, University of Rome "La Sapienza", Italy
WIT Transactions on the Built Environment
9th International Conference on Safety and Security Engineering, SAFE 2021
206
275
284
10
9781784664435
https://www.witpress.com/elibrary/wit-transactions-on-the-built-environment/206/38219
WITPress
londra
REGNO UNITO DI GRAN BRETAGNA
Esperti anonimi
2021
ita
Internazionale
Evacuation
Learning process
Risk
Supply
Transport system models
No
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
Musolino, Giuseppe
273
RISK REDUCTION IN TRANSPORT SYSTEM IN EMERGENCY CONDITIONS: A FRAMEWORK FOR SUPPLY ANALYSIS / Musolino, G.. - 206:(2021), pp. 275-284. (9th International Conference on Safety and Security Engineering, SAFE 2021 ita 2021) [10.2495/SAFE210231].
1
none
info:eu-repo/semantics/conferenceObject
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12318/123708
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