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Solving the Problem of Large Construction Safe Operation Cover

Solving the Problem of Large Construction Safe Operation

Open Access
|Nov 2025

References

  1. O.I. Dubinchik, V.R. Kildeev. “Prognozirovanie resursa zhelezobetonnykh konstruktsii po vynoslivosti armatury [Prediction of the service life of reinforced concrete structures based on reinforcement fatigue]”. Mosty ta tuneli: teoriya, doslidzhennya, praktyka, no. 7, pp. 13-18, 2015. (in Russian)
  2. A.I. Lantukhov-Lyashchenko, K.V. Medvedev. “K voprosu opredeleniya granichnogo iznosa stalezhelezobetonnoho proletnoho stroeniya avto-dorozhnogo mosta [On the issue of determining the ultimate wear of steel-reinforced concrete spans of highway bridges]”. Vestnik KHNADU, no. 58, pp. 90-95, 2012. (in Russian).
  3. S.S. Rekunov. “Ob otsenke nadyozhnosti i vosstanovlenii ekspluatatsionnykh kachestv mostovykh sooruzheniy [On the assessment of reliability and restoration of operational qualities of bridge structures]”. Internet-journal “Transportnye sooruzheniya”, vol. 3, no. 2, pp. 1-8, 2016. (in Russian)
  4. A.V. Perelmuter, M.M. Korneev. “Ukrainskaya shkola proektirovaniya stalnykh mostov [Ukrainian school of steel bridge design]”. Zbirnyk naukovykh prats Ukrainskoho instytutu stalevykh konstruktsiy imeni V.M. Shymanovskoho, vol. 25-26, pp. 106-143, 2020. (in Ukrainian)
  5. I.V. Kandaeva, D.I. Borodai. “Issledovanie nadyozhnosti zhelezobetonnykh proletnykh stroeniy avto-dorozhnogo puteprovoda [Study of the reliability of reinforced concrete spans of a highway overpass]”. Modern Industrial and Civil Construction, vol. 13, no. 2, pp. 47-56, 2017. (in Russian)
  6. A.I. Lantuh-Lyashchenko, P.M. Kovalov. “On the question about creation of national framework of bridge operations”. In: Diagnostic operation, longevity and regeneration of bridges and building constructions by applying high technology and materials, issue 1, edited by V.V. Panasiuk, Lviv: Kameniar, pp. 70-76, 1998. (in Ukrainian)
  7. P.M. Koval. “Development of the management system of highway bridges of Ukraine”. In: Roads and Bridges, Kyiv: DerzhdorNDI, issue 11, pp. 133-145, 2009. (in Ukrainian)
  8. O.I. Nigamatova, I.G. Ovchinnikov. “Systems of state management bridges”. Naukovodenie, vol. 7, no. 3, 2015. Mode of access: http://naukovedenie.ru/PDF/09TVN315.pdf.
  9. DBN V.2.3-22:2009. “Bridges and tubes. Dominant requirements of design”. Kyiv: Ministry of Regional Development of Ukraine, 52 p., 2009. (in Ukrainian)
  10. DBN V.2.3-14:2006. “Bridges and tubes. Design rules”. Kyiv: Minbud of Ukraine, 359 p., 2006. (in Ukrainian)
  11. DSTU-N B V.2.3-23:2009. “Guidelines for assessing and forecasting the technical condition of highway bridges”. Kyiv: Ministry of Regional Development of Ukraine, 49 p., 2009. (in Ukrainian)
  12. A.I. Lantuh-Lyashchenko. “Otsinka nadijnosti sporudy za modelem Markovs’koho vypadkovoho protsesu z dyzkretnymy stanamy [Reliability assessment of a structure based on the Markov random process model with discrete states]”. Avtomobilni dorohy i dorozhnye budivnytstvo, issue 57, pp. 183-188, 1999. (in Ukrainian)
  13. L.I. Iosilevskiy. “Prakticheskie metody upravleniya nadyozhnost’yu zhelezobetonnykh mostov [Practical methods for managing the reliability of reinforced concrete bridges]”. Moscow: Nauchn.-izd. tsentr “Inzhener”, 324 p., 2005. (in Russian)
  14. V.V. Panasyuk, Y.Y. Luchko (Eds.). “Mosty: konstruktsii ta nadijnist’ [Bridges: Structures and reliability]”. Lviv: Kameniar, 989 p., 2005. (in Ukrainian)
  15. L. Sukhodub, A. Panda, K. Dyadyura, I. Pandova and T. Krenicky. “The design criteria for biodegradable magnesium alloy implants”. MM Science Journal, pp. 2673-2679, 2018.
  16. A. Panda, V.M. Anisimov, V.V. Anisimov, K. Dyadyura and I. Pandova. „Increasing of wear resistance of linear block-polyurethanes by thermal processing methods.“ MM Science Journal, vol. 21, pp. 4731-4735, 2021.
  17. I. Pandová, M. Rimár, A. Panda, J. Valíček, M. Kušnerová and M. Harničárová. “A study of using natural sorbent to reduce iron cations from aqueous solutions.” International Journal of Environmental Research and Public Health, vol. 17, 2020.
  18. M. Harnicarova, J. Valicek, M. Kušnerová, J. Kmec, Z. Palková, I. Kopal, J. Krmela and A. Panda. “Study of the influence of the structural grain size on the mechanical properties of technical materials”. Materialwissenschaft und Werkstofftechnik, vol. 50, no. 5, pp. 635-645, 2019.
  19. L. Sukhodub, A. Panda, L. Sukhodub, M. Kumeda and P. Baron. “Hydroxyapatite and zinc oxide based two-layer coating, deposited on Ti6Al4V substrate.” MM Science Journal, pp. 3494-3499, 2019.
  20. A. Panda, M. Prislupčák and I. Pandová. “Progressive technology diagnostics and factors affecting machinability.” Applied Mechanics and Materials, vol. 616, pp. 183-190, 2014.
  21. A. Panda, J. Duplák. “Comparison of Theory and Practice in Analytical Expression of Cutting Tools Durability for Potential Use at Manufacturing of Bearings”. Operation and Diagnostics of Machines and Production Systems Operational States II, pp. 300-307, 2014.
  22. A.V. Podlazov. “Regimes with aggravation with complex indicators. Log-periodic oscillations in the model of fiber bundle rupture”. Preprints of the IPM im. M.V. Keldysh, no. 35, 22 p., 2009.
  23. N.E. Myasnikova. “Decomposition into empirical modes based on extremal filtration”. Digital Signal Processing, no. 4, pp. 13-17, 2014.
  24. O.V. Urentsov. “Checking the possibility of predicting crises in the financial market using the D method”. Proceedings of the ISA RAS, vol. 40, pp. 174-191, 2008.
  25. Opis tsyfrovoi systemy otrymannia lazernykh danykh z mosta [Description of the digital system for obtaining laser data from the bridge]. Available at: http://seismo.kiev.ua/pubs/SeismoStUK16UK15OnLine2008.pdf (in Ukrainian)
  26. “Opis sertyfikatsii vymiriuvalnykh lazernykh kompleksiv dlia mostiv” [Description of the certification of measuring laser complexes for bridges]. Available at: http://seismo.kiev.ua/pubs/230200ArticleText53105511020210524.pdf (in Ukrainian)
  27. S.V. Shcherbina, Yu.V. Lesovoy. “Programmnoe obespechenie telemetricheskoi sistemy sbora i obrabotki mikroseismicheskikh dannykh v rezhime on-line” [Software for a telemetry system for collecting and processing microseismic data in real-time]. Geodinamika, vol. 1, no. 7, pp. 110-115, 2008. (in Ukrainian)
  28. S.V. Shcherbina, A.I. Feshchenko, Yu.V. Lisovyi, A.P. Ivashchenko, O.V. Adamenko, Yu.P. Soroka. “Kompleksnyi pidkhid do sertyfikatsii ta metrologichnoho otsiniuvannia suchasnykh tsyfrovykh seismometrychnykh reiestratoriv” [Comprehensive approach to certification and metrological evaluation of modern digital seismometric recorders]. Geofizicheckiy zhurnal, no. 2, vol. 43, pp. 201-217, 2021. (in Ukrainian).
  29. S. Shcherbina, A. Feshchenko, R. Nesterenko. “Vykorystannia lazernoi seismo-akustychnoi systemy v ramkakh DBN V.2.5-76:2014 dlia postiiinoho monitorynhu problemnykh mostiv” [Use of the laser seismic-acoustic system within the framework of DBN B.2.5-76:2014 for continuous monitoring of problematic bridges]. II Mizhnarodna naukovo-praktychna konferentsiia im. P.M. Kovalia “Aktualni pytannia mostovoho hospodarstva ta shliakhy yoho pokrashchennia”. 07-09 December 2022, Lviv, Ukraine. (in Ukrainian)
  30. O.V. Kendzera, R.B. Kotsur, P.G. Pihulevskyi, A.I. Feshchenko, S.V. Shcherbina. “Patent for a laser Seismological Laser Complex”. UA122603U, no. 2/2018. (in Ukrainian)
  31. V. Nahornyi, A. Panda, J. Valíček, M. Harničárová, M. Kušnerová, I. Pandová, S. Legutko, Z. Palková and O. Lukáč. “Method of Using the Correlation between the Surface Roughness of Metallic Materials and the Sound Generated during the Controlled Machining Process”. Materials, vol. 15, 823, 2022.
  32. A. Panda, V. Nahornyi, J. Valíček et al. “A novel method for online monitoring of surface quality and predicting tool wear conditions in machining of materials.” Int J Adv Manuf Technol, vol. 123, pp. 3599-3612, 2022.
  33. Rozwadowski K., Konewecki A., Pasek R., Molski Sz.: Results of stress measurements on the guide rail supporting beams in a hoisting installation operated in the shaft Regis in relation to modelling data. Min. Mach. 2024, vol. 42 issue 2, pp. 90-107. DOI: https://doi.org/10.32056/KOMAG2024.2.1
  34. Szweda S., Wojtaszczyk M., Krenicky T.: Tests of selected elements of building components in the light of compulsory requirements. Min. Mach. 2022, vol. 40 issue 3, pp. 130-140. DOI: https://doi.org/10.32056/KOMAG2022.3.2
  35. A. Panda, K. Dyadyura, J. Valíček, M. Harničárová, M. Kušnerová, T. Ivakhniuk, L. Hrebenyk, O. Sapronov, V. Sotsenko, P. Vorobiov, V. Levytskyi and A. Buketov. “Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications.” Polymers, vol 14, 3275, 2022.
DOI: https://doi.org/10.2478/mspe-2025-0053 | Journal eISSN: 2450-5781 | Journal ISSN: 2299-0461
Language: English
Page range: 525 - 530
Submitted on: Apr 1, 2025
Accepted on: Oct 1, 2025
Published on: Nov 3, 2025
Published by: STE Group sp. z.o.o.
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Anton Panda, Volodymyr Nahornyi, Sergey Shcherbina, Vasily Mostovoy, published by STE Group sp. z.o.o.
This work is licensed under the Creative Commons Attribution 4.0 License.