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Reconstruction of water supply networks using “Arm-Pipe” and “Pipe-Arm” technologies

https://doi.org/10.22227/2305-5502.2024.4.70-79

Abstract

Introduction. The issues of carrying out repair work on the reconstruction of pressure water pipelines using trenchless technologies “Arm-Pipe” and “Pipe-Arm”, which allow to ensure resource conservation during water transportation, are considered. Information on regulatory and technical documentation, conditions and installation procedure for protective coatings of the pipeline being restored, as well as well as the results of computational and analytical studies on comparative analysis and assessment of the possibility of reducing energy consumption during water transportation during the operation of the pipeline after its reconstruction are presented. The technologies of trenchless reconstruction of “Arm-Pipe” and “Pipe-Arm” for the rapid restoration of pressure pipeline networks, as well as issues of saving electricity when transporting water through pipelines after work on their reconstruction with these technologies are presented.

Materials and methods. Analytical as well as computational methods by using an automated software package to determine energy savings due to the reconstruction of dilapidated existing pressure pipelines using “Arm-Pipe” and “Pipe-Arm” technologies were applied.

Results. Calculations have revealed the advantage of “Arm-Pipe” technology in comparison with “Pipe-Arm” in terms of potential energy savings when transporting water through pressure pipelines.

Conclusions. A comprehensive analysis of the technical and energy potential of the implementation of advanced trenchless technologies for the reconstruction of dilapidated “Arm-Pipe” and “Pipe-Arm” pipelines was carried out.

About the Authors

V. A. Orlov
Moscow State University of Civil Engineering (National Research University) (MGSU)
Russian Federation

Vladimir A. Orlov — Doctor of Technical Sciences, Professor, Professor of the Department of Water Supply and Sanitation

26 Yaroslavskoe shosse, Moscow, 129337



S. P. Zotkin
Moscow State University of Civil Engineering (National Research University) (MGSU)
Russian Federation

Sergey P. Zotkin — Candidate of Technical Sciences, Associate Professor, Professor of the Department of Computer Science and Applied Mathematics

26 Yaroslavskoe shosse, Moscow, 129337



D. V. Podolian
Moscow State University of Civil Engineering (National Research University) (MGSU)
Russian Federation

Dmitrii V. Podolian — postgraduate student of the Department of Water Supply and Sanitation

26 Yaroslavskoe shosse, Moscow, 129337



References

1. Shah G., Pitroda J., Bhavsar J. Trenchless technology: a new era towards underground utility construction. Engineering: Issues, opportunities and Challenges for Development. 2015; 1-8.

2. Khramenkov S.V. Strategy of modernization of the water supply network. Moscow, Stroyizdat Publ., 2005; 398. EDN QNLXXX. (rus.).

3. Primin O.G. Water leaks. Moscow, Publishing house MISS-MGSU, 2022; 168. DOI: 10.22227/978-5-7264-3010-2.2022.168. EDN CWUKBX. (rus.).

4. Romanov N.R. Low, reliable, failures and reconstruction of engineering networks. International Journal of Applied Sciences and Technology Integral. 2020; 3:6. EDN LWRGIU. (rus.).

5. Orlov V.A. Trenchless technologies for construction and restoration of pipelines of water supply and sanitation systems. Vologda, Infra-Engineering Publishing House, 2024; 228. EDN LRGVFI. (rus.).

6. Bubnov D.V., Volnushkina K.A., Bryanskaya Yu.V. Hydraulic characteristics of pipelines restored using polymer hoses. Student Science Days : collection of reports of a scientific and technical conference on the results of research work of students of the Institute of Industrial and Civil Construction. 2023; 266-275. (rus.).

7. Gorkov K. PIPEARM technology for restoration and repair of culverts. The Hydrotechnika. 2021; 4(65):90-91. EDN IZQRDC. (rus.).

8. Certificate of state registration of the computer program No. 2024615165 dated 04.12.2024. Calculation of energy savings during water transportation through pressure pipelines after their trenchless repair / Orlov V.A., Zotkin S.P., Podolyan D.V., Gorelov A.V.

9. Volgin G. The hydraulic resistance coefficient in the conditions of simultaneous effect of Re, Fr and B/h. E3S Web of Conferences. 2019; 97:05031. DOI: 10.1051/e3sconf/20199705031

10. Rylova I.A., Borovkov V.S. Equivalent roughness of pressure and pressure-free conduits. Vestnik MGSU [Proceedings of Moscow State University of Civil Engineering]. 2013; 4:181-187. EDN PZIERZ. (rus.).

11. Kadulin S.S. Development of an innovative solution for the modernization of engineering equipment for water supply systems. International Journal of Applied Sciences and Technologies “Integral”. 2020; 3 (rus.).

12. Sidorov I.V., Petrova A.B. Innovations in the field of water supply: Technologies for reconstruction of water supply networks. Journal of Water Resources. 2020; 12(4):215-220. (rus.).

13. Frolova A.S. Sustainable development projects in water supply: accounting ESG-factors. Economics and Management of National Economy. 2022; 7(212):145-151. (rus.).

14. Grin V.G., Pakhomov A.A., Kolobanova N.A., Shishkin A.S. Anti-corrosion coatings as a factor in ensuring the strength indicators of reconstructed metal pipelines. Izvestia of the Lower Volga Agro-University Complex: Science and Higher Education. 2021; 3(63):404-415. DOI: 10.32786/2071-9485-2021-03-42. EDN UFPPMH. (rus.).

15. Didenko L.M., Klimenko A.A. Providing of safety at works implementation on reconstruction of plumbings networks in the straitened terms. Bulletin of Pridneprovska State Academy of Civil Engineering and Architecture. 2016; 7(220):29-37. EDN WZTHMT. (rus.).

16. Nikolenko I.V., Krymov R.S., Zhilin A.K. Failure analysis of pipe networks of water supply systems of in the cities of Crimea in order to justify the reconstruction parameters. Construction and Industrial Safety. 2017; 7(59):61-72. EDN ZWBTIJ. (rus.).

17. Volna V.V., Krymov R.S., Melnikova N.S. Optimization of the water supply system in Feodosia, taking into account the wear of pipelines. Construction and Industrial Safety. 2022; 27(79):59-69. EDN WDBNHY. (rus.).

18. Noskova A.O. Development of models for the development of engineering infrastructure on the scale of urban planning and reorganization of existing buildings. Herald of Science and Education. 2019; 7-1(61):28-31. EDN CIQZGP. (rus.).


Review

For citations:


Orlov V.A., Zotkin S.P., Podolian D.V. Reconstruction of water supply networks using “Arm-Pipe” and “Pipe-Arm” technologies. Construction: Science and Education. 2024;14(4):70-79. (In Russ.) https://doi.org/10.22227/2305-5502.2024.4.70-79

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