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ARTYKUŁ ORYGINALNY
The potential for military use of public transport vehicles
 
 
 
Więcej
Ukryj
1
Department of Logistics, Poznań University of Economics and Business, Poland
 
 
A - Koncepcja i projekt badania; B - Gromadzenie i/lub zestawianie danych; C - Analiza i interpretacja danych; D - Napisanie artykułu; E - Krytyczne zrecenzowanie artykułu; F - Zatwierdzenie ostatecznej wersji artykułu
 
 
Data nadesłania: 05-08-2025
 
 
Data akceptacji: 30-12-2025
 
 
Data publikacji: 31-12-2025
 
 
Autor do korespondencji
Marcin Jurczak   

Department of Logistics, Poznań University of Economics and Business, al. Niepodległości 10, 61-875, Poznań, Poland
 
 
SLW 2025;63(2):97-110
 
SŁOWA KLUCZOWE
DZIEDZINY
STRESZCZENIE
Political instability and armed conflicts require that the Polish state protect the civilian population, including through large-scale evacuation. Public transport fleets may support evacuation. However, the growing share of zero-emission busses introduces constraints related to charging and hydrogen refueling infrastructure. The main research problem is whether increasing adoption of zero emission buses affects the flexibility of public transport fleets in evacuation scenarios and how this risk evolves over time. The research niche of this article is the impact of zero-emission propulsion on the feasibility of using public transport vehicles for evacuation. The study is based on a literature review and desk research (analysis of legal regulations, market trends and statistical data for selected Polish cities), complemented by a comparative case study of selected urban bus operators. Two related hypotheses are tested: H1 - propulsion source is related to flexibility of the public transport system in evacuation; H2 - the importance of this relationship increases as the share of zero emission vehicles grows. The results indicate that dependence on electricity/hydrogen supply and specialised infrastructure may reduce fleet flexibility during prolonged crises with disrupted energy supply. The article concludes with recommendations (e.g., maintaining a minimum reserve of conventional fuel vehicles, diversifying energy sources, and considering mobile charging/refuelling solutions) to strengthen evacuation readiness.
REFERENCJE (39)
1.
Barnes, B., Dunn, S., Pearson, C., Wilkinson, S., 2021. Improving human behavior in macroscale city evacuation agent-based simulations. International Journal of Disaster Risk Reduction, 60, 102289.
 
2.
Biłozor, A., Czyża, S., Szuniewicz, K., 2013. The Modeling process of evacuation in case of terrorist attack. Acta Scientiarum Polonorum Administratio Locorum, 12(1).
 
3.
Borowska-Stefańska, M., Goniewicz, K., Grama, V., Hornak, M., Masierek, E., Morar, C., Wiśniewski, S., 2023. Evaluating approaches to wartime mass evacuation management in eastern NATO territories: a literature review. Safety & Defense, 1.
 
4.
Borowska-Stefańska, M., Grama, V., Masierek, E., Morar, C., Wiśniewski, S., 2025. Evacuation planning in urban areas: A case study in Galați under military conflict conditions. Case Studies on Transport Policy, 20, 101424.
 
5.
The Central School of the State Fire Service in Czestochowa. Innovation in the world of firefighting. Electric fire engine with an additional diesel engine. n.d. [online]. Available at: https://www.gov.pl/web/cspsp-c... [Accessed: 05 August 2025].
 
6.
Chen, G., Zhang, J., 2022. Applying Artificial Intelligence and Deep Belief Network to predict traffic congestion evacuation performance in smart cities. Applied Soft Computing, 121, 108692.
 
7.
Chu, J., Su, Y., 2012. Application of TOPSIS method in selecting fixed seismic shelter for evacuation in cities. Systems Engineering Procedia, 3.
 
8.
Czerechowski, P., 2015. Selected problems of evacuating the population. Journal of Students Scientific Association. General Tadeusz Kościuszko Military University of Land Forces: Wrocław.
 
9.
Daudé, E., Chapuis, K., Taillandier, P., Tranouez, P., Caron, C., Drogoul, A., Zucker, J.D., 2019. ESCAPE: Exploring simulation of cities awareness of population evacuation. In: ISCRAM. CoRe Paper – T1: Analytical Modeling and Simulation Proceedings of the 16th ISCRAM Conference – València, Spain, May 2019.
 
10.
Gądek-Hawlena, T., Bęben, A., 2023. Demand determinants for electric vehicles in Poland. Military Logistics Systems, 58(1).
 
11.
GM Defense LLC. Electric Military Concept Vehicle Variant. n.d. [online]. Available at: https://www.gmdefensellc.com/s... [Accessed: 05 August 2025].
 
12.
H2 MOBILITY. n.d. Available at: H2.live [Accessed: 24 July 2025].
 
13.
Jałowiec T., 2021. Military logistics – from military sciences for the science of management and quality. Military Logistics Systems, 55(2).
 
14.
Katada, T., Kuwasawa, N., Shida, S., Kojima, M., 2015. Scenario analysis of evacuation strategies for residents in large cities during large-scale flooding. Journal of JSCE, 3(1).
 
15.
Martinez, S.K., Pompeo, M., Sheremeta, R., Vakhitov, V., Weber, M., Zaika, N., 2023. Civilian evacuation during war: Evidence from Ukraine. DOI:10.1093/ej/ueaf075.
 
16.
Miejskie Zakłady Autobusowe. n.d. [online]. Available at: https://warszawa.fandom.com/wi... [Accessed: 05 August 2025].
 
17.
MPK Kraków. Buses. n.d. [online]. Available at: https://mpk.krakow.pl/autobusy [Accessed: 05 August 2025].
 
18.
MPK Łódź. Buses. n.d. [online]. Available at: https://www.mpk.lodz.pl/showar... [Accessed: 05 August 2025].
 
19.
MPK Poznań. Route buses. n.d. [online]. Available at: https://www.mpk.poznan.pl/poja... [Accessed: 05 August 2025].
 
20.
MPK Poznań. Hydrogen buses have returned to service on Poznań’s public transportation lines. n.d. [online]. Available at: https://www.mpk.poznan.pl/auto... [Accessed: 05 August 2025].
 
21.
MPK Wrocław. Our vehicles. n.d. [online]. Available at: https://mpk.wroc.pl/o-mpk/nasz...# [Accessed: 05 August 2025].
 
22.
MZK Zielona Góra. Fleet n.d. [online]. Available at: https://www.mzk.zgora.pl/tabor [Accessed: 05 August 2025].
 
23.
Orłowska, M., 2023. Logistics support of military units as a determinant of local development. Military Logistics Systems, 58(1).
 
24.
Pawlos, W., Zadorożny, K., 2024. Electromobility in Poland as a Challenge for Modern Transport. Military Logistics Systems, 61.
 
25.
PIRE Association, 2024. Electric buses are becoming more common in Polish cities [online]. Available at: https://pire.pl/autobusow-elek... [Accessed: 05 August 2025].
 
26.
PKM Jaworzno. Operational rolling stock. n.d. [online]. Available at: https://www.pkm.jaworzno. pl/www/inne/o-spolce/eksploatowany-tabor/ [Accessed: 05 August 2025].
 
27.
PSNM, 2025. From defense to mobility: PSNM on key challenges for European transport [online]. Available at: https://psnm.org/2025/wydarzen... [Accessed: 05 August 2025].
 
28.
Renne, J.L., Mayorga, E., 2022. What has America learned since Hurricane Katrina? Evaluating evacuation plans for carless and vulnerable populations in 50 large cities across the United States. International Journal of Disaster Risk Reduction, 80, 103226.
 
29.
Rozporządzenie Rady Ministrów z dnia 30 maja 2025 r. w sprawie ewakuacji ludności oraz zabezpieczenia mienia. Dz.U. 2025 poz. 765 [online]. Available at: https://isap.sejm.gov.pl/isap.... [Accessed: 05 August 2025].
 
30.
Sahil, S., Sood, S.K., 2022. Fog-Cloud centric IoT-based cyber physical framework for panic oriented disaster evacuation in smart cities. Earth Science Informatics, 15(3).
 
31.
Special Vehicles. Buses – sales results in 2024 [online]. Available at: https://samochody-specjalne.pl... [Accessed: 05 August 2025].
 
32.
Transport – activity results in 2023. 2023 [online]. Available at: https://stat.gov.pl/obszary-te... [Accessed: 05 August 2025].
 
33.
Transport – activity results in 2023. Table 63 (97). Inventory, use and operating of urban transport stock a by voivodships. 2023 [online]. Available at: https://stat.gov.pl/obszary-te... [Accessed: 05 August 2025].
 
34.
Ustawa z dnia 11 stycznia 2018 r. o elektromobilności i paliwach alternatywnych (tekst ogłoszony). Dz.U. 2018 poz. 317 [online]. Available at: https://isap.sejm.gov.pl/isap.... [Accessed: 05 August 2025].
 
35.
Ustawa z dnia 11 stycznia 2018 r. o elektromobilności i paliwach alternatywnych (tekst jednolity). Dz.U. 2024 poz. 1289. Available at: https://isap.sejm.gov.pl/isap.... [Accessed: 05 August 2025].
 
36.
Ustawa z dnia 5 grudnia 2024 r. o ochronie ludności i obronie cywilnej. Dz.U. 2024 poz. 1907 [online]. Available at: https://isap.sejm.gov.pl/isap.... [Accessed: 05 August 2025].
 
37.
Walravens, S., Zharkova, A., De Weggheleire, A., Burton, M., Cabrol, J. C., Lee, J. S., 2023. Characteristics of medical evacuation by train in Ukraine, 2022. JAMA Network Open, 6(6), e2319726-e2319726.
 
38.
Yamada, T., 1996. A network flow approach to a city emergency evacuation planning. International Journal of Systems Science, 27(10).
 
39.
Yin, J., Yang, Y., Yu, D., Lin, N., Wilby, R., Lane, S., Guan, M., 2024. Strategic storm flood evacuation planning for large coastal cities enables more effective transfer of elderly populations. Nature Water, 2(3).
 
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