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Accounting of the dynamic pressure of bulk on the side surface in the world practice of designing building structures
Author(s) -
Oleg Кalmykov,
Rabie Khalife
Publication year - 2019
Publication title -
iop conference series. materials science and engineering
Language(s) - English
Resource type - Journals
eISSN - 1757-899X
pISSN - 1757-8981
DOI - 10.1088/1757-899x/708/1/012053
Subject(s) - eurocode , retaining wall , surface (topology) , wedge (geometry) , foundation (evidence) , face (sociological concept) , structural engineering , coulomb , component (thermodynamics) , mechanics , geology , engineering , physics , mathematics , geometry , law , thermodynamics , optics , political science , social science , quantum mechanics , sociology , electron
This paper contains research of the seismic effects on the design of retaining walls. The present state of the technique of determining the pressure of the bulk medium on the side surface is analyzed. The basic theory of soil pressure on the retaining walls in static formulation is the Coulomb theory, according to which the pressure of the bulk medium on the lateral surface is determined by the condition of static equilibrium of a rigid wedge formed in the layer between the rear face of the structure and the sliding surface. In the works of Okabe and Mononobe, the proposed theory has evolved in the direction of dynamic influence accounting. To date, these studies are at the heart of current regulations. the issue of seismic component consideration in the calculation of retaining walls in the world design practice was analysed. The differences between the calculated dependencies of the US, Ukraine and Eurocodes codes are given. The reasons for the analyzed differences are identified and recommendations for their correction are offered.

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