47-57 p.
This article discusses the specifics of the construction of bridge structures in cramped conditions of dense urban development. The classification of bridge structures and features of each type are given. The main characteristics and weight and size parameters of elements of bridge structures, methods of their erection, transportation and installation are considered. Particular attention is paid to the arrangement of the construction site, transportation of finished products and materials to the construc-tion site, as well as measures to prevent damage to buildings, structures and transport routes adjacent to the construction site, including the railway.
The study considered the project for the implementation of the construction of the Strela overpass in the city of Tyumen. Emphasis was placed on the production of radial prestressed reinforced con-crete beams of span structures in construction conditions. It was decided to manufacture these struc-tures at the work site.
The study considered the project for the implementation of the construction of the Strela overpass in the city of Tyumen. Emphasis was placed on the production of radial prestressed reinforced con-crete beams of span structures in construction conditions. It was decided to manufacture these struc-tures at the work site.
[1] Gabitova L.I., Ibragimova A.A., Petropavlovskikh O.K. Organization of road bridge con-struction in cramped conditions. 2019. S (11). P. 26. (rus.)
[2] Grechukhin V.A. Bridge Construction: a manual for students of specialty 1-70 03 02 “bridg-es, transport tunnels and metropolitans”. Minsk: BNTU publ., 2017. 96 p. (rus.)
[3] Kolokolov N.M., Weinblat B.M. Building bridges: textbook. Moscow: Kniga po Trebovani-ya publ., 2013. 504 p. (rus.)
[4] Kurlyand V.G., Kurlyand V.V. Construction of bridges: textbook. manual for universities. MADI. M., 2012. 176 p. (rus.)
[5] Ovchinnikov I. G., Ovchinnikov I. I., Maltseva T. V. et al. Search for new technologies and solutions in transport construction. Patent search: a textbook. TIU. Tyumen: TIU publ.,, 2020. 104 p. (rus.)
[6] Russian standard SP 259.1325800.2016 “Bridges in conditions of dense urban development. Design rules”. [Electronic resource]. Access address: https://demo.garant.ru/#/document/71611030/(rus.)
[7] Reference book of the modern designer: reference book. under general edit. by Mailyan L. R. 7th ed. Rostov-On-Don: Feniks publ., 2011, 540 p. (in Russian).2011. 540 p. (rus.)
[8] Abudayyeh O., Cai H., Mellema B., Yehia S. Quantifying Time and user cost savings for rapid bridge construction technique. Transportation Research Record: Journal of the Trans-portation Research Board. 2010. 2151 (1). P. 11 – 20. Doi:10.3141/2151-02
[9] Billington S.L., Barnes R.W., Breen J.E. Alternate Substructure Systems for Standard High-way Bridges. Journal of Bridge Engineering. March-April 2001. 6 (2). P. 87 – 94. DOI: 10.1061/(ASCE)1084-0702(2001)6:2(87)
[10] Brusselaers N., Koen Mommens K., Macharis C. Building Bridges: A Participatory Stake-holder Framework for Sustainable Urban Construction Logistics. Sustainability. 2021. 13 (5). DOI: 10.3390/su13052678
[11] Frangopol D.M., Liu M. Maintenance and management of civil infrastructure based on con-dition, safety, optimization, and life-cycle cost. Structure and Infrastructure Engineering. 2007. 3 (1). P. 29 – 41. DOI:10.1080/15732470500253164
[12] Górecki J., Núñez-Cacho P. Decision-Making Problems in Construction Projects Executed under the Principles of Sustainable Development-Bridge Construction Case. Applied Scienc-es. 2022. 12 (12). P. 6132. DOI:10.3390/app12126132
[13] Reese G.A. Innovative Applications of Precast Concrete to Complex Bridge Projects in Col-orado. Transportation Research Record Journal of the Transportation Research Board, 2010. 2200 (1). DOI:10.3141/2200-18
[14] Anastasiades K., Blom J., Buyle M., Audenaert A. Translating the circular economy to bridge construction: Lessons learnt from a critical literature review. Renewable and Sustainable Energy Reviews. 2020. Elsevier, 117 (C). P. 109522. DOI: 10.1016/j.rser.2019.109522
[15] Russell H.G., Ralls M.L., Benjamin M. Tang B.M. Prefabricated Bridge Elements and Sys-tems in Japan and Europe. Transportation Research Record. 2005. 1928 (1). DOI: 10.1177/0361198105192800111
[2] Grechukhin V.A. Bridge Construction: a manual for students of specialty 1-70 03 02 “bridg-es, transport tunnels and metropolitans”. Minsk: BNTU publ., 2017. 96 p. (rus.)
[3] Kolokolov N.M., Weinblat B.M. Building bridges: textbook. Moscow: Kniga po Trebovani-ya publ., 2013. 504 p. (rus.)
[4] Kurlyand V.G., Kurlyand V.V. Construction of bridges: textbook. manual for universities. MADI. M., 2012. 176 p. (rus.)
[5] Ovchinnikov I. G., Ovchinnikov I. I., Maltseva T. V. et al. Search for new technologies and solutions in transport construction. Patent search: a textbook. TIU. Tyumen: TIU publ.,, 2020. 104 p. (rus.)
[6] Russian standard SP 259.1325800.2016 “Bridges in conditions of dense urban development. Design rules”. [Electronic resource]. Access address: https://demo.garant.ru/#/document/71611030/(rus.)
[7] Reference book of the modern designer: reference book. under general edit. by Mailyan L. R. 7th ed. Rostov-On-Don: Feniks publ., 2011, 540 p. (in Russian).2011. 540 p. (rus.)
[8] Abudayyeh O., Cai H., Mellema B., Yehia S. Quantifying Time and user cost savings for rapid bridge construction technique. Transportation Research Record: Journal of the Trans-portation Research Board. 2010. 2151 (1). P. 11 – 20. Doi:10.3141/2151-02
[9] Billington S.L., Barnes R.W., Breen J.E. Alternate Substructure Systems for Standard High-way Bridges. Journal of Bridge Engineering. March-April 2001. 6 (2). P. 87 – 94. DOI: 10.1061/(ASCE)1084-0702(2001)6:2(87)
[10] Brusselaers N., Koen Mommens K., Macharis C. Building Bridges: A Participatory Stake-holder Framework for Sustainable Urban Construction Logistics. Sustainability. 2021. 13 (5). DOI: 10.3390/su13052678
[11] Frangopol D.M., Liu M. Maintenance and management of civil infrastructure based on con-dition, safety, optimization, and life-cycle cost. Structure and Infrastructure Engineering. 2007. 3 (1). P. 29 – 41. DOI:10.1080/15732470500253164
[12] Górecki J., Núñez-Cacho P. Decision-Making Problems in Construction Projects Executed under the Principles of Sustainable Development-Bridge Construction Case. Applied Scienc-es. 2022. 12 (12). P. 6132. DOI:10.3390/app12126132
[13] Reese G.A. Innovative Applications of Precast Concrete to Complex Bridge Projects in Col-orado. Transportation Research Record Journal of the Transportation Research Board, 2010. 2200 (1). DOI:10.3141/2200-18
[14] Anastasiades K., Blom J., Buyle M., Audenaert A. Translating the circular economy to bridge construction: Lessons learnt from a critical literature review. Renewable and Sustainable Energy Reviews. 2020. Elsevier, 117 (C). P. 109522. DOI: 10.1016/j.rser.2019.109522
[15] Russell H.G., Ralls M.L., Benjamin M. Tang B.M. Prefabricated Bridge Elements and Sys-tems in Japan and Europe. Transportation Research Record. 2005. 1928 (1). DOI: 10.1177/0361198105192800111
Belov E.I. Bridge construction in cramped urban environments. Construction Materials and Products. 2023. 6 (2). P. 47 – 57. https://doi.org/10.58224/2618-7183-2023-6-2-47-57

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