Improving civil aviation airports infrastructure taking into account the design process of aircraft maintenance organizations
https://doi.org/10.26467/2079-0619-2022-25-1-35-52
Abstract
Air transport is of the essence in providing conditions for the effective performance of modern economic paradigm. Operating airlines, the subjects of the Russian Federation and the State as a whole, are equally interested in the development of air transportation system infrastructure. Civil aviation ensures the transport system integrated safety and stability, the relationship of regions and human settlements, especially Siberia, the North and the Far East regions. Over the post-Soviet period in the Russian Federation, the volume of passenger and cargo operations has decreased significantly, air transport linkages between regions have been lost. Such a passenger and cargo operations-related situation has occurred with heavy traffic congestion in the country’s hubs and does not allow the Russian Federation air transportation system to develop comprehensively and harmoniously. A detailed assessment of the country's civil aviation infrastructure will enable experts to put forward proposals for the air transport system modernization and development. Working space of aircraft maintenance organizations is an integral part among air transport infrastructure facilities. In order to conduct aeronautical equipment maintenance, it is necessary to have engineering and manufacturing objects, hangars and areas to accommodate and store maintenance facilities, equipment (general, individual, specialpurpose), consumables, premises for planning and dispatching departments, space to accommodate served aircraft, their components, etc. In addition, depending on the number of served aircraft types, the air transportation volume and regular pattern, the calculation of workforce and means of engineering and aviation support is essential. These issues require in-depth development on the basis of a scientific approach using the simulation modeling methods.
About the Authors
Yu. I. SamulenkovRussian Federation
Yuri I. Samulenkov, Candidate of Technical Sciences, Associate Professor of the Technical Operation of Aircraft and Aviation Engines Chair
Moscow
A. B. Babkov
Russian Federation
Alexander B. Babkov, Candidate of Technical Sciences, Associate Professor of The Chair of Transportation Organization on Air Transport
Moscow
Ya. A. Filatova
Russian Federation
Yana A. Filatova, the 4th year student
Moscow
References
1. Sobol, L.S. (2013). To the question of the development of civil aviation in Russia. Nauchnyy Vestnik MGTU GA, no. 190, p. 138–143. (in Russian)
2. Kozochkina, O.A. (2009). Sotsialno-ekonomicheskoye obosnovaniye razvitiya regionalnoy aerodromno (aeroportovoy) seti v Rossiyskoy Fediratsii: avtoref. dis. … kand. ekonom. nauk [Socioeconomic justification for the development of the regional airfield (airport) network in the Russian Federation: Abstract of Candidate Economic Sc. Dissertation]. Moscow: GUU, 24 p. (in Russian)
3. Sokolin, A.V. and Fridlyand, A.A. (2007). The criteria and algorithm of forming the composition of the airport network. Nauchnyy Vestnik MGTU GA, no. 118, p. 70–73. (in Russian)
4. Galaburda, V.G., Ivanova, E.A. and Flyagina, T.A. (2016). The role of transport mobility population in improving the quality of life and development of the company. Transport Business of Russia, no. 5, p. 101–103. (in Russian)
5. Galaburda, V.G., Bubnova, G.V. and Ivanova, E.A. (2011). Transportnyy marketing: uchebnik dlya vuzov [Transport marketing: Textbook for Universities], in Galaburda V.G. (Ed.). Moscow: MIIT, 452 p. (in Russian)
6. Borzova, A.S. and Zheleznaya, I.P. (2013). The Moscow hub airports infrastructure condition analysis. Nauchnyy Vestnik MGTU GA, no. 197, p. 107–110. (in Russian)
7. Petrov, A.N. (2008). Aircraft continuing airworthiness methodology based on the control of the maintenance system effectiveness. Nauchnyy Vestnik MGTU GA, no. 130, p. 34–41. (in Russian)
8. Zheleznaya, I.P. (2014). The strategy of development of ground based infrastructure of the airports of civil aviation. Nauchnyy Vestnik MGTU GA, no. 202, p. 21–24. (in Russian)
9. Babkov, A.B. (2020). Aeroporty i vozdushnyye trassy: uchebno-metodicheskoye posobiye po vypolneniyu kursovoy raboty «Proektirovaniye generalnogo plana aeroporta» [Airports and air routes: educational and methodological guide for the implementation of the course work "Designing the general plan of the airport"]. Moscow: ID Akademii Zhukovskogo, 64 p. (in Russian)
10. Adler, Yu.P., Markova, E.V. and Granovskiy, Yu.V. (1976). Planirovaniye eksperimenta pri poiske optimalnykh resheniy [Experiment planning in the search for optimal solutions]. Moscow: Nauka, 280 p. (in Russian)
11. Rogov, V.A. and Poznyak, G.G. (2005). Metodika i praktika tekhnicheskikh eksperimentov: uchebnoe posobie dlya vuzov [Methodology and practice of technical experiments: a textbook for universities]. Moscow: Academy, 283 p. (in Russian)
12. Kublanov, M.S. (2004). Matematicheskoye modelirovaniye. Metodologiya i metody razrabotki matematicheskikh modeley mekhanicheskikh sistem i protsessov. Chast II. Planirovaniye eksperimentov i obrabotka rezultatov izmereniy: uchebnoye posobiye [Mathematical modeling. Methodology and methods of developing mathematical models of mechanical systems and processes. Part II. Planning of experiments and processing of measurement results: Tutorial]. 3rd ed., pererab. i dop. Moscow: MGTU GA, 125 p. (in Russian)
13. Kleijnen, J.P.C. (1974). Statistical techniques in simulation. Part I. New York: M. Dekker, 285 p.
14. Gorsky, V.G., Adler, Yu.P. and Talalay, A.M. (1978). Planirovaniye promyshlennykh eksperimentov [Planning of industrial experiments]. Moscow: Metallurgiya, 112 p. (in Russian)
15. Wentzel, E.S. (1980). Issledovaniye operatsiy: zadachi, printsipy, metodologiya. [Operations research: tasks, principles, methodology]. Moscow: Nauka, 208 p. (in Russian)
16. Sasieni, M.W. and Ackoff, R.L. (1968). Fundamentals of operations research. John Wiley and Sons, 468 p.
17. Guseva, E.N. (2016). Analiz rezultatov imitatsionnogo modelirovaniya v srede ROCKWELL SOFTWARE ARENA [Analysis of simulation results in the ROCKWELL SOFTWARE ARENA environment]. Teplotekhnika i informatika v obrazovanii, nauke i proizvodstve: sbornik dokladov Vserossiyskoy nauchno-prakticheskoy konferentsii studentov, aspirantov i molodykh uchonykh (TIM’2016) s mezhdunarodnym uchastiyem [Heat engineering and informatics in education, science and production: a collection of reports of the V All-Russian scientific-practical conference of students, graduate students and young scientists (TIM'2016) with international participation], p. 194–198. (in Russian)
18. Sovetov, B.Ya. and Yakovlev, S.A. (2001). Modelirovanye system: uchebnik dlya vuzov [System modeling: Textbook for Universities]. 3rd ed., pererab. i dop. Moscow: Vysshaya shkola, 343 p. (in Russian)
19. Samulenkov, Yu.I., Filatova, Ya.A. and Gruzd, A.D. (2021). Aircraft maintenance system simulation mathematical model construction. Civil Aviation High Technologies, vol. 24, no. 4, p. 38–49. DOI: 10.26467/2079-0619-2021-24-4-38-49 (in Russian)
Review
For citations:
Samulenkov Yu.I., Babkov A.B., Filatova Ya.A. Improving civil aviation airports infrastructure taking into account the design process of aircraft maintenance organizations. Civil Aviation High Technologies. 2022;25(1):35-52. (In Russ.) https://doi.org/10.26467/2079-0619-2022-25-1-35-52