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Tytuł artykułu

Simulation model for maritime container terminal

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
For logistic chains that have a maritime component, the ports transition involves a set of specific operations inside maritime container terminals. This can be cargo handling operations from the terrestrial vehicle in the storage area of ports, from port storage area in the maritime ships, as well as storage operations in the port area and other container terminal activities. Taking into consideration the multi-flow interactions and the non-uniform arrival of vessels and in-land vehicles, discrete event simulation stands as a feasible technique for investigating berthing capacity during the initial planning stage of the terminal or for operative planning of logistic processes at the terminal. If the storage area is analysed as a queuing system, the quality serving attributes could be evaluate. When different distributions for arrival flows of the containers in the maritime container terminal are taken into consideration, the quality serving attributes are difficult to estimate. In our paper, a discrete simulation model is developed in ARENA software for case of a maritime container terminal. The estimation of the general measures of performance for the container port terminals through simulation could provide data for the implementation in the management plans by port administrations.
Czasopismo
Rocznik
Strony
47--54
Opis fizyczny
Bibliogr. 16 poz.
Twórcy
autor
  • Politehnica University of Bucharest, Faculty of Transport Spl Independentei, no 313, Bucharest, Romania
autor
  • Politehnica University of Bucharest, Faculty of Transport Spl Independentei, no 313, Bucharest, Romania
autor
  • Politehnica University of Bucharest, Faculty of Transport Spl Independentei, no 313, Bucharest, Romania
autor
  • Politehnica University of Bucharest, Faculty of Transport Spl Independentei, no 313, Bucharest, Romania
Bibliografia
  • 1. Antognoli, M. & Capodilupo, L. & Marinacci, C. & Ricci, S. & Rizzetto, L. & Tombesi, E. Present and Future Operation of Rail Freight Terminals. In: Sładkowski, A. (ed.) Transport systems and delivery of cargo on East – West routes. Studies in Systems, Decision and Control 155. Cham: Springer. 2018. P. 233-273.
  • 2. Baldassarra, A. & Impastato, S. & Ricci, S. Intermodal terminal simulation for operations management. European Transport. 2010. No. 46. P. 86-99.
  • 3. Capodilupo, L. & Furiò Pruñonosa, S. & Marinacci, C. & Ricci, S. & Rizzetto, L. Analytical methods and simulation models to assess innovative operational measures and technologies for rail port terminals: the case of Valencia Principe Felipe terminal. In: XII Conference on Transport Engineering CIT 2016. Valencia, 2016.
  • 4. Cimpeanu, R. & Devine, M.T. & O’Brien, C. A simulation model for the management and expansion of extended port terminal operations. Transportation Research Part E: Logistics and Transportation Review. 2017. Vol. 98. P. 105-131.
  • 5. Dinu, O. & Roşca, E. & Popa, M. & Roşca, M.A. & Rusca, A. Assessing materials handling and storage capacities in port terminals. In: IOP Conference Series: Materials Science and Engineering. 2017. Vol. 227(1). P. 1-9.
  • 6. Dragu, V. & Dinu, O. & Oprea, C. & Roman, E.A. The transport forecast - an important stage of transport management. In: IOP Conference Series-Materials Science and Engineering. 2017. Vol. 252. P. 1-8.
  • 7. Iannone, R. & Miranda, S. & Prisco, L. & Riemma, S. & Sarno, D. Proposal for a flexible discrete event simulation model for assessing the daily operation decisions in a Ro–Ro terminal. Simulation Modelling Practice and Theory. 2016. Vol. 61. P. 28-46.
  • 8. Kotachi, M. & Rabadi, G. & Obeid, M.F. Simulation Modeling and Analysis of Complex Port Operations with Multimodal Transportation. Procedia Computer Science. 2013. Vol. 20. P. 229-234.
  • 9. Lin, J. & Gao, B. & Zhang, C. Simulation-based investment planning for Humen Port. Simulation Modelling Practice and Theory. 2014. Vol. 40. P. 161-175.
  • 10. Marinacci, C. & Quattrini, A. & Ricci, S. Integrated design process of maritime terminals assisted by simulation models In International Conference on Harbour, Maritime and Multimodal Logistics Modelling and Simulation. Vol. 1. 2008. P. 190-201.
  • 11. Özkan, E.D. & Nas, S. & Güler, N. Capacity Analysis of Ro-Ro Terminals by Using Simulation Modeling Method. The Asian Journal of Shipping and Logistics. 2016. Vol. 32(3). P.139-147.
  • 12. Ricci, S. & Capodilupo, L. & Tombesi, E. – Discrete Events Simulation of Intermodal Terminals Operation: Modelling Techniques and Achievable Results. Civil Comp Proc. Vol. 110. 2016.
  • 13. Ruscă, F. & Raicu, S. & Rosca, E. & Rosca, M. & Burciu, Ş. Risk assessment for dangerous goods in maritime transport. In: Towards Green Marine Technology and Transport – Proceedings of the 16th International Congress of the International Maritime Association of the Mediterranean. IMAM 2015. P. 669-674.
  • 14. Steenken, D. & Voß, S. & Stahlbock, R. Container terminal operation and operations research –a classfication and literature review. OR Spectrum. 2004. Vol. 26. P. 3-49.
  • 15. Sun, Z. & Lee, L.H. & Chew, E.P. & Tan, K.C. MicroPort: A general simulation platform for seaport container terminals. Advanced Engineering Informatics. 2012. Vol. 26(1). P. 80-89.
  • 16. Veloqui, M. & Turias, I. & Cerbán, M.M. & González, M.J. & Buiza, G. & Beltrán, J. Simulating the Landside Congestion in a Container Terminal. The Experience of the Port of Naples (Italy). Procedia - Social and Behavioral Sciences. 2014. Vol. 160. P. 615-624.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-75f31938-5dbc-472b-9b36-fcaad631272b
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