РАСЧЕТНАЯ МОДЕЛЬ ДЕФОРМИРОВАНИЯ ГРУНТОВОГО ОСНОВАНИЯ ВЫСОТНОГО ЗДАНИЯ С УЧЕТОМ ПРЕДЫСТОРИИ ЗАГРУЖЕНИЯ

Author:

Mirsayapov Ilizar,Koroleva Irina

Abstract

While designing high-rise buildings, it is necessary to take into account the influence of stages of their erection, this is the sequence of loading, on the change in physical-mechanical properties of soils. The calculation of deformations of subgrade is made with due regard for the change in soils properties comparing with the initial (natural) state. On the basis of the results of experimental studies, the authors substantiate the necessity for introducing the new parameter which makes it possible to characterize the mechanical condition of the soil at any stage of loading and can be used for creating calculation models. An analytical diagram of soil deformation in coordinates «σ1–ε1» for triaxial compression (where σ1 – vertical stresses (deviator), ε1 – linear deformations under the triaxial compression) is adopted as this parameter. The procedure for constructing transformed diagrams of the soil state under the long performance triaxial loading is described. The procedure obtained was approbated when calculating deformations of the foundation base of the high-rise building with due regard for the influence of staging of construction and rheological properties of soils on the change in the base rigidity and, as a result, on the redistribution of stresses among separate elements of the system “subgrade –foundation – upper part of the building.

Publisher

Publishing House ASV (Izdatelstvo ASV)

Subject

Mechanics of Materials,Building and Construction,Civil and Structural Engineering,Computational Mechanics

Reference9 articles.

1. Mirsayapov I.T., Koroleva I.V. (2021) Geotekhnicheskii` prognoz vliianiia ustroi`stva svai`nogo fundamenta v ovrage na sushchestvuiushchuiu zastroi`ku [Geotechnical forecast of the influence of the installation of a pile foundation in a ravine on existing buildings], Zhilishchnoe Stroitel’stvo [Housing Construction], no 8, pp. 3-11. doi:10.31659/0044-4472-2021-8-3-11.

2. Ter-Martirosyan A., Sidorov V. Studying the influence of taking into account the elastic-plastic behavior of strut ele-ments on the retaining system equilibrium. IOP Confer-ence Series: Materials Science and Engineering: 7, Tashkent, 11–14 November 2020. Tashkent, 2021, p. 012030. doi:10.1088/1757-899X/1030/1/012030.

3. Mangusev R.A., Penkov D.V. (2021) Sravnenie rezul`tatov chislenny`kh raschetov s ispol`zovaniem sovremenny`kh modelei` grunta (Hardening Soil, Hardening Soil Small i Generalized Hardening Soil) s rezul`tatami monitoring [Comparison of the results of numerical calculations using modern soil models (Hardening Soil, Hardening Soil Small and Generalized Hardening Soil) with monitoring results]. Vestnik Grazhdanskikh Inzhenerov [Bulletin of Civil Engineers], no 2(85), pp. 85-93. doi:10.23968/1999-5571-2021-18-2-85-93.

4. I. T. Mirsayapov, N. N. Aysin (2022) Ocenka vliyaniya ustroystva glubokogo kotlovana na dopolnitelniye osadki zdaniy okruzhaiushchey zastroyki [Assessing the impact of constructing a deep pit on additional settlements of sur-rounding buildings], News KSUAE, no 3(61), pp. 6-13. doi:10.52409/20731523_2022_3_6.

5. Mirsayapov I.T., Koroleva I.V. (2020) Seismic and wind impacts on subgrade deformations of high-rise buildings. Proceedings of the 12th International Conference on Con-temporary Problems of Architecture and Construction, ICCPAC 2020 (Saint Petersburg , Russia, November 25–26, 2020), pp. 221-224.

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