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Abstract

Summary

More than 80% of the territory of Ukraine are featured by the harsh engineering and geological conditions. The territories with the difficult conditions include the areas of bedding the soils with special properties (70% of the territory have subsiding, as well as swelling, biogenic, silt, eluvial, saline and bulk are present) or with the possible development of dangerous geological processes; territories that are forged, flooded, etc.; the seismic areas occupy more than 120,000 km2 or 20% of the territory. At the State Research Institute of Building Constructions in Kyiv the scientific and technical works on ensuring the technical solutions safety for several objects has been performed. The buildings neighboring the transport interchange reconstruction site on Poshtova Square in the Podilskyi District of Kyiv should be considered among such objects. It was necessary to assess the construction impact on nearby buildings. For this purpose, in April 2015, an observation station was arranged on the adjacent buildings, a zero reading was taken, and the geodetic monitoring as a special type of the geotechnical monitoring has started. The report presents the geodetic monitoring results for the municipal transport company MC “Kyivpastrans” building at 2 Naberezhne Highway.

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/content/papers/10.3997/2214-4609.2023520056
2023-11-07
2025-05-23
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References

  1. Chornomordenko, I., Voloshkina, O., Mokan, N., Bondarenko, N., Spiridonov, M., & Stavroiani, S. (2021). Manifestation of the basic dialectics laws in slope processes as exampled by the Poshtova Square reconstruction in Kyiv.3rd EAGE Workshop on Assessment of Landslide Hazards and Impact on Communities, Landslide 2021.
    [Google Scholar]
  2. DBN V.1.2-14:2018. (2018). General principles for buildings and civil engineering works reliability and structural safety ensuring.
    [Google Scholar]
  3. Kaliukh, I., Lebid, O. (2021). Constructing the Adaptive Algorithms for Solving Multi-Wave Problems.Cybern Syst Anal, 57, 938–949. DOI: https://doi.org/10.1007/s10559-021-00419-w
    [Google Scholar]
  4. Kaliukh, I., Senatorov, V., Khavkin, O., Kaliukh, T., & Khavkin, K. (2013). Experimental and analytic researches on technical state, design and operation of reinforced concrete anti-landslide structures for seismic dangerous regions of Ukraine.Proceedings of the fib Symposium: Engineering a Concrete Future: Technology, Modeling and Construction, Tel-Aviv, 22–24 April 2013.
    [Google Scholar]
  5. Pechersk, a new building on a dangerous slope: power, greed, bats and landslides. (2007). Retrieved from https://censor.net.ua/resonance/166/pechersk_novostroyi_na_opasnom_sklone_vlast_jadnost_bity_i_opolzni_viktoriya_vladina_dlyatsenzornet
    [Google Scholar]
  6. Slyusarenko, Y. et al. (2023). Experimental Solving the Problem of the Shelter Object Reinforced Concrete Structures Thermal Expansion. In: Ilki, A., Çavunt, D., Çavunt, Y.S. (eds.) Building for the Future: Durable, Sustainable, Resilient. fib Symposium 2023. Lecture Notes in Civil Engineering, vol 350. Springer, Cham. https://doi.org/10.1007/978-3-031-32511-3_173
    [Google Scholar]
  7. Telyma, S.V., Voloshkina, O.S., Bereznytska, Y.O., & Efimenko, V.M. (2020). Modeling of the riverside groundwater intakes exploitation taking into account of the stream flow changes. In: Geoinformatics: Theoretical and Applied Aspects, 2020, 1–5. DOI:10.3997/2214‑4609.2020geo084
    https://doi.org/10.3997/2214-4609.2020geo084 [Google Scholar]
  8. Telyma, S.V., Oliynyk, E.O, Voloshkina, O.S., & Vildman, I.M. (2020). Theoretical substantiation and calculations of water flow to ranney water intakes and drainages under protection from submergence of the urban territories and buildings by ground water.IOP Conf. Ser.: Mater. Sci. Eng.907. DOI 10.1088/1757‑899X/907/1/012061
    https://doi.org/10.1088/1757-899X/907/1/012061 [Google Scholar]
  9. Trofymchuk, O., Lebid, O., Berchun, V., Berchun, Y., & Kaliukh, I. (2022). Ukraine’s Cultural Heritage Objects Within Landslide Hazardous Sites. In: Vayas, I., & Mazzolani, F.M. (Eds.). Protection of Historical Constructions. PROHITECH 2021, Lecture Notes in Civil Engineering, vol. 209. Cham: Springer. DOI: https://doi.org/10.1007/978-3-030-90788-4_73
    [Google Scholar]
  10. Vanichek, I. (2016). Application of Eurocode 7 to soil structures.World of Geotechnics, 4, 4–8.
    [Google Scholar]
  11. Voloshkina, E., Efimenko, V., Zhukova, O., Chernyshev, D., Korduba, I., & Shovkivska, V. (2021). Visual Modeling of the Landslide Slopes Stress-Strain State for the Computer-Aided Design of Retaining Wall Structures.IEEE 16th Int. Conf. on the Experience of Designing and Application of CAD Systems (CADSM). DOI: 10.1109/CADSM52681.2021.9385211
    https://doi.org/10.1109/CADSM52681.2021.9385211 [Google Scholar]
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