1. Topology Optimisation of Lattice Telecom- munication Tower and Performance-Based Design Considering Wind and Ice Loads / K. D. Tsavdaridis [et al.] // Structures. 2020. Vol. 27. Pp. 2379–2399. DOI: https://doi.org/10.1016/j.istruc.2020.08.010

2. Rekomendacii po utochnennomu dinamicheskomu raschetu zdaniy i sooruzheniy na deystvie pul'sacionnoy sostavlyayuschey vetrovoy nagruzki. M.: CNIISK im. V. A. Kucherenko, 2000. 45 s.

3. Nagruzki i vozdeystviya na zdaniya i sooruzheniya / V. N. Gordeev [i dr.]; pod obsch. red. A. V. Perel'mutera. Izd. 4-e, pererab. i dop. M.: Izd-vo SKAD SOFT, 2014. 588 s.

4. SP 20.13330.2016 Nagruzki i vozdeystviya. Aktualizirovannaya redakciya SNiP 2.01.07-85* (s izm. № 1–6); utv. prikazom Ministerstva stroitel'stva i zhilischno-kommunal'nogo hozyaystva RF ot 03.12.2016 № 891/pr (s izm. i dop.).

5. Simiu E., Skanlan R. Vozdeystvie vetra na zdaniya i sooruzheniya / per. s angl. B. E. Maslovoy, A. V. Shvecovoy. M.: Stroyizdat, 1984. 358 s.

6. Pichugin S. F., Mahin'ko A. V. Normirovanie vetrovoy nagruzki na reshetchatye opory v standartah raznyh stran mira // Metallicheskie konstrukcii. 2009. T. 15, № 4. S. 237–252.

7. Razrabotka i verifikaciya mnogoblochnyh vychislitel'nyh tehnologiy dlya resheniya nestacionarnyh zadach stroitel'noy aerodinamiki vysotnyh zdaniy v ramkah podhoda URANS / S. A. Isaev [i dr.] // Inzhenerno-stroitel'nyy zhurnal. 2013.m№ 1 (36). S. 103–109. DOI:https://doi.org/10.5862/MCE.36.13.

8. Gosteev Yu. A., Obuhovskiy A. D., Salenko S. D. Chislennoe modelirovanie poperechnogo obtekaniya proletnyh stroeniy balochnyh mostov // Vestnik Donskogo gosudarstvennogo tehnicheskogo universiteta. 2018. T. 18, № 4. S. 362–378. DOI:https://doi.org/10.23947/1992-5980-2018-18-4-362-378

9. Wind Tunnel Testing of Telecommunication Lattice Towers Equipped With Ancillaries / I. Calotescu [et al.] // Engineering Structures. 2021. Vol. 241. P. 112526. DOI:https://doi.org/10.1016/j.engstruct.2021.112526

10. Research on Wind Load Characteristics on the Surface of a Towering Precast Television Tower with a Grid Structure Based on Large Eddy Simulation / P. Wu, G. Chen, R. Feng, F. He // Buildings. 2022. Vol. 12, no. 9. P. 1428. DOI:https://doi.org/10.3390/buildings12091428

11. Reconstruction of Dynamic Wind Forces on a Transmission Steel Lattice Tower Using Aeroelastic Wind Tunnel Test Data / W. Zhang [et al] // Engineering Structures. 2023. Vol. 275. P. 115167. DOI:https://doi.org/10.1016/j. engstruct.2022.115167

12. Estimation of Dynamic Wind Forces on a Steel Lattice Tower Based on Generalized Wind Force Spectra / W. Zhang [et al.] // Structures. 2023. Vol. 48. Pp. 1634–1650. DOI:https://doi.org/10.1016/j.istruc.2022.12.073

13. Gust Response Factor of a Transmission Tower Under Typhoon / X. Fu [et al.] // International Journal of Structural Stability and Dynamics. 2020. Vol. 21, no. 01. P. 2150001. DOI:https://doi.org/10.1142/S0219455421500012

14. Sokolov A. G. Metallicheskie konstrukcii antennyh ustroystv. M.: Stroyizdat, 1971. 240 s.

15. Perel'muter A. V. Zadachi sinteza v teorii sooruzheniy (kratkiy istoricheskiy obzor) // Vestnik Tomskogo gosudarstvennogo arhitekturno-stroitel'nogo universiteta. 2016. № 2 (55). S. 70– 106.

16. Savickiy G. A. Osnovy rascheta radiomacht: statistika i dinamika. M.: Svyaz'izdat, 1953. 276 s.

17. GOST 10704–91. Truby stal'nye elektrosvarnye pryamoshovnye. Sortament (vved. 01.01.1993). M.: Standartinform, 2007. 23 s.