Underground Space Development Using Large-Sized Reinforced Concrete Modules

Мұқаба

Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Тек жазылушылар үшін

Аннотация

The article describes trends in the development of underground construction from the point of view of its industrialization. In recent years there have been prerequisites for increasing the speed and volume of industrialization and application of large-sized reinforced concrete modules of factory production along with monolithic reinforced concrete both in aboveground and underground construction. Group of Companies “MonArch” is realizing the project of a low-rise residential building with a underground floor in modular design at current time. The aspects of underground floor design with use of large-size factory-made reinforced concrete modules are presented. As part of the Roadmap approved by the Ministry of Construction of the Russian Federation, it is planned to update a number of existing regulatory and technical documents aimed at simplifying design and survey work and the construction of modular buildings. Specialists of departments and leading organizations of the construction complex continue a number of studies aimed at improving existing and developing new calculation methods for buildings and structures made of large-sized modules. The results of the calculation of end and row modules of the underground floor on the spatial model by the finite element method are presented. The implementation of the idea of underground urbanistics using large-sized modules in modern conditions is possible and promising. Large-size modules are not inferior in their reliability to conventional building structures.

Толық мәтін

Рұқсат жабық

Авторлар туралы

V. Gorbachevskii

National Research Moscow State University of Civil Engineering; LLC “Concern MonArch”

Хат алмасуға жауапты Автор.
Email: mail@rifsm.ru

Postgraduate Student of the Department of Reinforced Concrete and Masonry Structures, Leading Design Engineer

Ресей, 26, Yaroslavskoe Highway, Moscow, 129337; 31A, bldg. 1, Leningradsky Avenue, Moscow, 125284

L. Pakhomova

National Research Moscow State University of Civil Engineering

Email: mail@rifsm.ru

Senior Lecturer of the Department of Technologies and Organization of Construction Production

Ресей, 26, Yaroslavskoe Highway, Moscow, 129337

L. Akimov

National Research Moscow State University of Civil Engineering

Email: mail@rifsm.ru

4th year Bachelor Student

Ресей, 26, Yaroslavskoe Highway, Moscow, 129337

Әдебиет тізімі

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  5. Patent RF 2712845. Sposob izgotovleniya krupnogabaritnogo gotovogo ob”emnogo modulya i sposob stroitel’stva zdaniya iz krupnogabaritnykh gotovykh ob”emnykh moduley [Method of manufacturing large-sized finished three-dimensional module and method of building construction from large-size finished 3d modules]. Ambartsumyan S.A., Meshcheryakov A.S. Declared 30.11.2018. Published 31.01.2020. (In Russian).
  6. Patent RF 2715781. Sposob proizvodstva ob”emnogo modulya [Method for production of volume module]. Ambartsumyan S.A., Meshcheryakov A.S. Declared 19.08.2019. Published 03.03.2020. (In Russian).
  7. Lapidus A.A., Ambartsumyan S.A., Dolgov O.S., Kolpakov A.M., Mescheryakov A.S., Gorbachevskii V.P. Investigation of the influence of technological and functional features of mobile conveyor robotic production lines on the design of reinforced concrete walls and floors of mobile large-sized modules. Stroitel’noye proizvodstvo. 2022. No. 3, pp. 2–10. (In Russian). DOI: https://doi.org/10.54950/26585340_2022_3_2
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Әрекет
1. JATS XML
2. Fig. 1. Design model of the end (a) and row (b) modules of the underground floor

Жүктеу (170KB)
3. Fig. 2. Mosaic of vertical stresses Nx (a) and horizontal stresses Ny (b) in the structures of the end module of the underground floor

Жүктеу (1MB)
4. Fig. 3. Mosaic of vertical stresses Nx (a) and horizontal stresses Ny (b) in the structures of the row module of the underground floor

Жүктеу (1MB)

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