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The freight transport effectiveness assessment in the aspect of the use of environmentally friendly vehicles

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EN
Abstrakty
EN
The freight transport combines the issue of supply services organization for various types of entities, including large shopping centres, stores of various industries, restaurants, work and leisure places, small-scale outlets, or municipal waste shipments. Due to the location of customers, transport services encounter many difficulties related to infrastructural constraints and increased traffic. This adversely affects the safety and obstructions in traffic and air pollution and thus is a disturbing factor for the lives of inhabitants. There is also a growing problem of the smog in large cities (in Poland, for example, Warsaw or Cracow). Traffic safety, minimization of congestion, and minimization of environmental pollution by transport activities are of particular importance in the development of freight traffic organization plans. In connection with the above, in recent years, the use of Environmentally Friendly Vehicles (EFV) in various spheres of human activity has been dynamically developing, and this concerns the cargo transport. Currently, vehicle manufacturers are providing an increasing number of delivery vehicles and trucks. On the other hand, entrepreneurs planning to implement pro-environmental solutions face a decision problem related to the efficiency of a transport system based on the use of EFV as well as the economic validity of implementing this type of innovation. In connection with the above, in this article, the problem of the impact of transport on the environment and the use of EFV in the freight transport was analysed. The main issues related to the functioning of the transport system and its negative impact on the environment has been presented. Environmental friendly vehicles and their parameters have been characterized. The main decision problems in organizing the transport system, also in the context of the use of EFV, have been identified and analysed. Finally, an example of a model for assessing the efficiency of a transport system with an emphasis on its impact on the environment was presented. The article was concluded with the summary of considerations and the proposal for further work.
Twórcy
  • Warsaw University of Technology Faculty of Transport Koszykowa Street 75, 00-662 Warsaw, Poland tel.:+48 22 234 14 10
Bibliografia
  • [1] Ambroziak, T., Jachimowski, R., Pyza, D., Szczepański, E., Analysis of the traffic stream distribution in terms of identification of areas with the highest exhaust pollution, Archives of Transport, 32(4), 7-16, 2014.
  • [2] Badyda, A. J., Zagrożenia środowiskowe ze strony transportu, Wyd. Nauka, No. 4, pp. 115-125, 2010.
  • [3] Bradley, T., Quinn, W., Analysis of plug-in hybrid electric vehicle utility factors, Journal of Power Sources, 195, 5399-5408, 2010.
  • [4] de Palma, A., Lindsey, R., Traffic congestion pricing methodologies and technologies, Transportation Research Part C: Emerging Technologies, 19(6), 1377-1399, 2011.
  • [5] Eurostat. New vehicles registration – Passenger cars, Lorries [road_eqr_carpda,road_eqr_lormot], Retrieved from https://ec.europa.eu/ eurostat/web/transport/data/database, 2018.
  • [6] Foltyński, M., Electric fleets in urban logistics, Procedia-Social and Behavioral Sciences, 48-59, 2014.
  • [7] Fuks, K., Moebus, S., Hertel, S., Viehmann, A., Nonnemacher, M., Dragano, N., Hoffmann, B.,Long-term urban particulate air pollution, traffic noise, and arterial blood pressure,Environmental Health Perspectives, 119(12), 1706, 2011.
  • [8] Igliński, H., Koszty kongestii w miastach, Przegląd Komunikacyjny, 47(10), 25-31, 2008.
  • [9] Jacyna, M., Merkisz, J., Kształtowanie systemu transportowego z uwzględnieniem emisji zanieczyszczeń w rzeczywistych warunkach ruchu drogowego, Oficyna Wydawnicza Politechniki Warszawskiej, Warszawa 2014.
  • [10] Jacyna, M., Modelowanie i ocena systemów transportowych, Oficyna Wydawnicza Politechniki Warszawskiej, Warszawa 2009.
  • [11] Jacyna, M., Żak, J., Jacyna-Gołda, I., Merkisz, J., Merkisz-Guranowska, A., Pielecha, J., Selected aspects of the model of proecological transport system, Journal of KONES, 20, 2013.
  • [12] Jacyna, M., Merkisz, J., Proecological approach to modelling traffic organization in national transport system, Archives of Transport, 30(2), 31-41, 2014.
  • [13] Jacyna, M., Merkisz, J., Lewczuk, K., Szczepański, E., Transport policy development with EMITRANSYS simulation model, In: Jacyna, M., Wasiak, W. (Eds.), Simulation model to support designing a sustainable national transport system, Index Copernicus, pp. 155-163, Warsaw 2014.
  • [14] Jacyna, M., Wasiak, M., Lewczuk, K., Karoń, G., Noise and environmental pollution from transport: decisive problems in developing ecologically efficient transport systems, Journal of Vibroengineering, 19(7), 5639-5655, 2017.
  • [15] Jacyna-Gołda, I, Izdebski, M., Szczepański, E., Gołda, P., The assessment of supply chain effectiveness, Archives of Transport, 45(1), 43-52, 2018.
  • [16] Jacyna-Gołda, I., Gołębiowski, P., Izdebski, M., Kłodawski, M., Jachimowski, R., Szczepański, E., The evaluation of the sustainable transport system development with the scenario analyses procedure, Journal of Vibroengineering, 19(7), 5627-5638, 2017.
  • [17] Korzeb, J., Chudzikiewicz, A., Evaluation of the vibration impacts in the transport infrastructure environment, Archive of Applied Mechanics, 85(9-10), 1331-1342, 2015.
  • [18] Levy, J. I., Buonocore, J. J., Von Stackelberg, K., Evaluation of the public health impacts of traffic congestion: a health risk assessment, Environmental health, 9(65), 1-12, 2010.
  • [19] Maibach, M., Schreyer, C., Sutter, D., Van Essen, H. P., Boon, B. H., Smokers, R., Bak, M., Handbook on estimation of external costs in the transport sector, CE Delft, 2008.
  • [20] Mirhedayatian, S. M., Yan, S., A framework to evaluate policy options for supporting electric vehicles in urban freight transport, Transportation research part D: transport and environment, 58, 22-38, 2018.
  • [21] Musso, A., Rothengatter, W., Internalisation of external costs of transport-A target driven approach with a focus on climate change, Transport policy, 29, 303-314, 2013.
  • [22] Navarro, C., Roca-Riu, M., Furió, S., Estrada, M., Designing new models for energy efficiency in urban freight transport for smart cities and its application to the Spanish case, Transportation Research Procedia, 12, 314-324, 2016.
  • [23] Ntziachristos, L., Samaras, Z., EMEP/EEA air pollutant emission inventory guidebook, EEA 2017.
  • [24] Szczepański, E., Overview and analysis of solving method for cargo distribution problems in multi-objective optimization model, In J. Feliks (Eds.), CLC 2013: Carpathian Logistics Congress ‐ Congress Proceedings, TANGER Ltd., pp. 628-634, Ostrava 2014.
  • [25] Szczepański, E., Jacyna, M., An approach to optimize the cargo distribution in urban areas, Logistics and Transport, 17(1), 53-62, 2013.
  • [26] Visvikis, C., Morgan, P., Boulter, P., Hardy, B., Robinson, B., Edwards, M., Dodd, M., Pitcher, M., Electric vehicles: review of type-approval legislation and potential risks, Transport Research Laboratory, 2010.
  • [27] Wasiak, M., Jacyna, M., Lewczuk, K., Szczepański, E., The method for evaluation of efficiency of the concept of centrally managed distribution in cities, Transport, 32(4), 348-357, 2017.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-991fe341-bf34-46c2-9975-dedfc827f6d7
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