Engineering problems of restoration. Protection of historic buildings from negative environmental impact
https://doi.org/10.31675/1607-1859-2023-25-4-71-83
Abstract
The relevance of the study is due to the problem of preservation of historical and cultural heritage of Russia and the city of Tomsk in particular.
Purpose: The aim of the paper is to draw attention to the disturbance of the structural integrity of architectural monuments such as transport vibrations and stray earth currents.
Methodology/approach: Field studies of the architectural monument of the Church of St. Alexander Nevsky in Tomsk; the analysis of the city plan in the area of Gertsen and Sovetskaya Streets; measures proposed for the monument protection from negative influences of the urban environment. Originality: The paper proposes protection measures for the Church of St. Alexander Nevsky of the regional importance from vibrations and stray earth currents generated by trams moving in the vicinity of the Church.
Practical implications: Recommendations are given for eliminating the negative impact of transport vibrations on architectural monuments on the example of the Church of St. Alexander Nevsky in Tomsk.
About the Authors
A. A. KutukovRussian Federation
Aleksandr A. Kutukov, Graduate Student
2, Solyanaya Sq., 634003, Tomsk
E. N. Kolokoltseva
Russian Federation
Evgeniya N. Kolokoltseva, Senior Lecturer
2, Solyanaya Sq., 634003, Tomsk
L. S. Romanova
Russian Federation
Larisa S. Romanova, PhD, A/Professor, RAACS Adviser
2, Solyanaya Sq., 634003, Tomsk
References
1. Davydova Е.V., Dzyuba Y.M. Risk factors of chronic non-infectious diseases in long-term experience in industrial vibrations. Vestnik nauchnykh konferentsii. 2021; 10-1 (74): 20–22. (In Russian)
2. Kirsanov V.V. Norming and maximum permissible level of industrial, transport, residential and public building vibrations. In: Proc. 15th All-Russ. Conf. ‘Chemistry and Engineering Ecology’, Kazan, 2015, Pp. 173–175. (In Russian)
3. Vyazov А.Е. Classification and types of industrial vibration. Studencheskii vestnik. 2021; 1 (146). Available: https://studvestnik.ru/journal/stud/herald/146 (accessed 9 June, 2023). (In Russian)
4. Panov А.B., Damdinova D.R., Lomova N.M. Engineering and seismic survey of historical, architectural, and cultural monuments in the Republic of Buryatia. Vestnik Vostochno-Sibirskogo gosudarstvennogo universiteta tekhnologii i upravleniya. 2016; 3 (60): 18–23. (In Russian)
5. Belash Т.A., Aldrebi Z.A. Earthquake resistance of architectural monuments in Syria. Bezopasnost' sooruzhenii. 2020; 1 (44): 21–25. (In Russian)
6. Alimov С.G. Transport vibration effect on architectural monuments. PhD Abstract. Vladivostok, 2006. Pp.1–28. (In Russian)
7. Borisov Е.K., Alimov S.G., Usov A.G., Lysak L.G., Krylova T.V., Stepanova E.A. Experimental dynamics of structures. Monitoring of transport vibrations. Petropavlovsk-Kamchatsky, 2007. 128 p. (In Russian)
8. Glukharev Y.D., Gladkov M.N. Earth stray currents in operation of electric railway transport. Proc. Symposium ‘Miner's Week’. Moscow, 1998. (In Russian)
9. Bobryakov A.P., Lubyagin A.V. Screen for building protection from vibrations. Patent Russ. Fed. No. 52415, 2006. 16 p. (In Russian)
Review
For citations:
Kutukov A.A., Kolokoltseva E.N., Romanova L.S. Engineering problems of restoration. Protection of historic buildings from negative environmental impact. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2023;25(4):71-83. (In Russ.) https://doi.org/10.31675/1607-1859-2023-25-4-71-83