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Solving technological problems of flight services at airport involving composite materials

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Inadequate information support and dispatch of the execution of individual operations of the technological process (especially the repair of composite structures) of aircraft preparation for a flight is one of the reasons for delays. In this regard, there is a need to study the management processes of airport services that ensure the performance of individual technological operations in the preparation of aircraft for departure. This problem belongs to the class of multi-criteria problems, which is solved using simulation modelling. The model is represented by an interconnected set of modules, each of which is associated with a separate technological operation of the general technological process, i.e. the technological process is divided into separate technological operations. The links of individual blocks of the model reflect the information and technological links of a real set of technological operations of flight preparation for departure and are represented by the synthesising algorithm of the simulation model.
Rocznik
Strony
123--129
Opis fizyczny
Bibliogr. 30 poz., rys.
Twórcy
  • Riga Aeronavigacija Institut, Mechanics and Metalworking, Thermal Energetics, Thermal Power Engineering and Mechanical Engineering, 9 Mežkalna Street Riga LV-1058, Latvia
  • Riga Technical University, Aviation Transport, Ķīpsalas Street 6A, Riga LV-1048, Latvia
  • Kielce University of Technology, Faculty of Mechatronics and Mechanical Engineering, al.1000-lecia Państwa Polskiego 7, 25-314, Kielce, Poland
  • Riga Technical University, Aviation Transport, Ķīpsalas Street 6A, Riga LV-1048, Latvia
Bibliografia
  • 1. Ionescu L., Gwiggner C., Kliewer N., Data analysis of delays in airline networks, Development of Business and Information Systems 2016, April, 58(2), 119-133, DOI: 10.1007/s12599-015-0391-3.
  • 2. Du W.-B., Zhang M.-Y., Zhang Y., Cao X.-B., Zhang J., Delay causality network in air transport systems, Transportation Research Part E: Logistics and Transportation Review 2018, 118, 466-476.
  • 3. Hickel R., Brushaver K., Ilie N., Repair of restorations criteria for decision making and clinical recommendations, Dental Materials 2013, 29(1), 28-50, DOI: 10.1016/j.dental.2012.07.006.
  • 4. Mammadlı N., Minimally Invasive Treatment Approaches in Pediatric Dentistry, Health & Science 2022: Odontology-II, ed. A. Dal Donertaş, Efe Academy, Istanbul 2022, 163-170.
  • 5. Wu Y., Application of carbon fiber composite materials in aircraft, Applied and Computational Engineering, 2024, 61(1), 245-248, DOI: 10.54254/2755-2721/61/20240969.
  • 6. De Sa Rodrigues F., Bekas D.G., Khodaei Z.S., Aliabadi F.M.K., Smart patch repair solution for cure monitoring of bonded repairs in composite aircraft structures, Procedia Structural Integrity 2024, 52, 719-729.
  • 7. Oktal H., Oktal O., The use of information technologies and systems in airlines, European and Mediterranean Conference on Information Systems, Izmir 2009, https://www.researchgate.net/publication/289206757.
  • 8. Norese М., Riva S., A multicriteria approach to support the design of complex systems, Foundations of Computing and Decision Sciences 2008, 33(1).
  • 9. Maghrabie F., Beauregard Y., Grey-based multi-criteria decision analysis approach: Addressing uncertainty at complex decision problems, Technological Forecasting and Social Change 2019, 146, 366-379.
  • 10. Tlustenko S., Development and research of methodology for information support of technological systems for the assembly production of aircraft, Mechanics and Mechanical Engineering 2015.
  • 11. Feoktistov A., Basharina O.Yu., Fereferov E., Automation of Queuing System Simulation Modeling in Grid, Information Science, Computer Engineering and Management 2017, 21, 12, 105-113, DOI: 10.21285/1814-3520-2017-12-105-113.
  • 12. Habib M., Paul Ch., A survey of the algorithmic aspects of modular decomposition Computer Science Review, 2010, 41-59.
  • 13. De Sa Rodrigues F., Hami Seno A., Khodaei Z.S., Aliabadi F., Structural health monitoring platform for industrial scale composite structures, Advances in Fracture and Damage Mechanics, XX AIP Conf. Proc. 2023, 2848, 020041, DOI:10.1063/5.0145027, 978-0-7354-4548-2/$30.00.
  • 14. Saeedifar M., Zarouchas D., Damage characterization of laminated composites using acoustic emission: A review, Composites Part B Engineering 2020, 195, 108039, DOI:10.1016/j.compositesb.2020.108039.
  • 15. Yue N., Khodaei Z.S., Aliabadi M., Damage detection in large composite stiffened panels based on a novel SHM building block philosophy, Smart Materials and Structures 2021, 30(4), 045004.
  • 16. Yu H., Seno A.H., Khodaei Z.S., Ferri Aliabadi M.H., Structural health monitoring impact classification method
  • based on bayesian neural network, Polymers 2022, 14(19),3947, DOI: 10.3390/polym14193947.
  • 17. Mardanshahi A., Nasir V., Kazemirad S., Shokrieh M., Detection and classification of matrix cracking in laminated composites using guided wave propagation and artificialneural networks, Compos. Struct. 2020, 246, 112403.
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  • 21. Ionescu L., Gwiggner C., Kliewer N., Data analysis of delays in airline networks, Development of Business and Information Systems 2016, 58(2), 119-133, DOI: 10.1007/s12599-015-0391-3.
  • 22. Konikova E.V., Koromyslov A.A., Control system for ground support of air transportation under risk conditions, Logistics Today 2009, 1, 17-22.
  • 23. Ehrgott M., Gandibleux X., Multiobjective Combinatorial Optimization, In: Multiple Criteria Optimization: State of the Art Annotated Bibliographic Surveys, Kluwers’ International Series, 2002, 369-444.
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  • 25. Iriste S., Katane I., Expertise as a Research Method in Education, Rural Environment. Education. Personality 2018, 11. Jelgava, 11-12 May.
  • 26. Budylina E.A. et al., Approaches to the multicriteria of complex systems, Young Scientist 2013, 6(53) 40-43, https://moluch.ru/archive/53/7010/.
  • 27. Orman Ł.J., Boiling heat transfer on meshed surfaces of different aperture, Proc. Int. Conf. on Application of Experimental and Numerical Methods in Fluid Mechanics and Energetics, Liptovsky Jan, Slovakia, 9-11 April 2014, AIP Conference Proceedings 2014, 1608, 169-172, DOI:10.1063/1.4892728.
  • 28. Orman Ł.J., Boiling heat transfer on single phosphor bronze and copper mesh microstructures, Proc Int. Conf. EFM13 –Experimental Fluid Mechanics 2013, EPJ Web of Conferences 2014, 67, 02087, DOI: 10.1051/epjconf/ 20146702087.
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  • 30. Fan J., Integrated scheduling problem on a single bounded batch machine with an unavailabity constraint, Discrete Dynamics in Nature and Society 2020, 8625849, 9 pages, DOI: 10.1155/2020/8625849.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7cf5935b-33df-49f9-843f-c9ac2d4f366b
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