Published since 1923
DOI: 10.33622/0869-7019
Russian Science Citation Index (RSCI) на платформе Web of Science


  • BUILDING STRUCTURES, BUILDINGS AND FACILITIES
  • Panel House With Hollow-Core Slab Floors: Design And Construction Experience
  • UDC 693.9
    doi: 10.33622/0869-7019.2025.07.04-11
    Andrey V. SOLTYS1, av-tagil@mail.ru
    Denis V. LUBENTSOV2, uspr66@mail.ru
    Gennadiy A. MORDICH3, gennadiy.mordich@mail.ru
    Olga V. LOZAKOVICH3, ola.lozakovich@mail.ru
    Alexander I. MORDICH3, alex.mordich@mail.ru
    1 Architectural workshop "AV", ul. Papanina, 27, of. 1, Nizny Tagil 622001, Russian Federation
    2 Leisure Service, ul. Papaninzev, 20a, Pervouralsk 623104, Russian Federation
    3 BESTIngineering, prospect Masherova, 9, of. 214, Minsk 220029, Republic of Belarus
    Abstract. Based on the results of research and field tests, proposals are given for prefabricated monolithic floor structures with multi-cavity slabs, as well as load-bearing panel walls for large-panel housing construction. The design of the supporting system of the panel house considered in the article has been developed. The justification of the parameters of these structures is given, and their description is presented. It is shown that due to the partial offset of the load forces in the sections of the prefabricated slabs by reactive spacer forces arising in the plane of the prefabricated monolithic floor, the pitch of the load-bearing walls can exceed 7 m. As a result, areas free of load-bearing walls are formed on each floor in the volume of the building. The developed proposals are implemented in the design documentation of a nine-storey prefabricated monolithic panel house and in its construction. The implemented planning structure of the premises of the house is versatile, transformable during operation and is aimed at maximizing customer satisfaction. The achieved technical and economic indicators and the experience of building the house have confirmed its high economic efficiency and adaptability.
    Keywords: large-panel house, multi-cavity slab, prefabricated monolithic load-bearing building system, planning structure, open architectural and structural system, pitch of load-bearing walls
  • REFERENCES
    1. Novoselov V. A. Analusis of house-building systems and possibilities for their improvement. Promyshlennoe i grazhdanskoe stroitelstvo, 2013, no.7, pp. 69-71. (In Russ.).
    2. Magay A. A., Dubynin N. V. Large-panel residential building with board step of bearing structures ensuring the free layout of apartement. Zhilishchnoe stroitel'stvo, 2016, no.10, pp. 21-24. (In Russ.).
    3. Nikolaev S. V., Shreiber A. K., Etenko V. P. Panel and frame housing construction - a new stage of development of housing building. Zhilishchnoe stroitel'stvo, 2015, no. 2, pp. 3-7. (In Russ.).
    4. Zenin S. A., Sharipov R. S., Kudinov O. V., Sharipo G. I. Regulation in large-panel housing construction: the new set of rules on desing of large-panel structural systems. Promyshlennoe i grazhdanskoe stroitelstvo, 2018, no. 2, pp. 10-15. (In Russ.).
    5. Bosakov S. V., Mordich A. I., Stmbirkin V. N. About impoving the bearing capacity and rigidity of floors made of hollow-core slabs. Promyshlennoe i grazhdanskoe stroitelstvo, 2017, no. 4, pp. 44-49 (In Russ.).
    6. Bosakov S. V., Mordich A. I., Karyakin A. A. et al. Load test of a precast-monolithic floor supported on bearing walls of a multystory building. Promyshlennoe i grazhdanskoe stroitelstvo, 2018, no. 2, pp. 35-42. (In Russ.).
    7. Bosakov S. V., Mordich A. I., Kudryashov V. A. et al. Behaviour of semy-precast reinforced corcrete floor as part wall loud-bearing system. Promyshlennoe i grazhdanskoe stroitelstvo, 2024, no.1, pp. 27-35. (In Russ.).
    8. Ayvazov R. L., Lapitskiy I. V. Precast slab floor, simply supported on the contour and working with cross spacers. Beton i zhelezobeton, 1991, no.1, pp. 7-9. (In Russ.).
    9. Ternovski I. A., Karyakin A. A., Sonin S. A. et al. Comparison of expenses for construction of monolithic and prefabricated-monolithic bearing structures of mully-storey buildings. Promyshlennoe i grazhdanskoe stroitelstvo, 2020, no.1, pp. 12-20. (In Russ.). doi: 10.33622/0869-7019.2020.01.12-20
    10. Nikolaev V. B., Rubin O. D., Seleznev S. V. Strength calculation and desing of crete elements. Beton i zhelezobeton, 1987, no.1, pp. 38-40. (In Russ.).
    11. Amburtcumyan S. A., Martirosyan A. S., Galumyan A. V. Standards of formwork at hight-speed cast-in-place reinforced housing construction. Promyshlennoe i grazhdanskoe stroitelstvo, 2009, no. 2, pp. 39-41. (In Russ.).
  • For citation: Soltys A. V., Lubentsov D. V., Mordich G. A., Lozakovich O. V., Mordich A. I. Panel House With Hollow-Core Slab Floors: Design and Construction Experience. Promyshlennoye i grazhdanskoye stroitel'stvo [Industrial and Civil Engineering], 2025, no. 7, рp. 4-11. (In Russ.). doi: 10.33622/0869-7019.2025.07.04-11


BACK