Modelling of damping devices in the seismic analysis of an airport terminal structures
Modelling of damping devices in the seismic analysis of an airport terminal structures

Modelling of damping devices in the seismic analysis of an airport terminal structures

DOI: 10.37153/2618-9283-2022-2-118-124

Authors:  

Valery N. Simbirkin

Ph.D. (Engineering), head of the sector of LAIPS of TSNIISK named after V.A.Kucherenko of JSC RCC. Moscow, Russian Federation  


Yuriy V. Panasenko
head of the group of LAIPS of TSNIISK named after V.A.Kucherenko of JSC RCC. Moscow, Russian Federation

Victor V. Kurnavin
deputy head of LAIPS of TSNIISK named after V.A.Kucherenko of JSC RCC. Moscow, Russian Federation


Rubric:     Design, building and reconstruction of aseismic constructions   
Key words: dynamic analysis, finite element method (FEM), seismic resistance, hydraulic viscous damper
Annotation:

An analysis of the efficiency of using damping devices to increase the design seismic resistance of the projected building of one of the airport terminals is presented. In this case, an anti-seismic system use is the only way to implement architectural and space-planning solutions on a site with a more than 8th seismic intensity level in the design project. Models of hydraulic viscous dampers in which the reactive force depends non-linearly on the velocity of movement of the rod, linear viscous dampers and elastic-perfectly plastic elements are considered. 

The methods considered in the paper are implemented in the STARK ES software and are available for a practical use in structural design and research.

Used Books:

1.   Simbirkin V.N., Panasenko Yu.V. Uproshchennyy nelineynyy dinamicheskiy raschet sooruzheniy pri seysmicheskikh vozdeystviyakh. Stroitel'naya mekhanika i raschet sooruzheniy. 2017, no. 5 (274), pp. 32-36. (In Russian)

2.    Simbirkin V.N., Panasenko Yu.V. Uchet ukazaniy SP 14.13330.2018 pri realizatsii rascheta sooruzheniy na seysmicheskie vozdeystviya v programmnom komplekse STARK ES. Vestnik NITs «Stroitel'stvo». 2019, no. 2 (21), pp. 103-113. (In Russian)

3.    Filimonov A.V. Uchet nenaydennykh form sobstvennykh kolebaniy pri raschete reaktsii zdaniy i sooruzheniy na seysmicheskie vozdeystviya. Stroitel'naya mekhanika i raschet sooruzheniy. 2014, no. 2, pp. 46-53. (In Russian)

4.    GOSTR 57364-2016 / EN 15129:2010. Ustroystva antiseysmicheskie. Pravila proektirovaniya. M.: Standartinform, 2017. (In Russian)

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