Comparative nonlinear analysis of a RC 2D frame soil-pile interaction
Autor: | Radomir Folić, Boris Folić |
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Jazyk: | angličtina |
Rok vydání: | 2018 |
Předmět: |
021110 strategic
defence & security studies p-y curves business.industry soil-structure interaction (SSI) Frame (networking) 0211 other engineering and technologies non-linear dynamic analysis (NDA) non-linear static (pushover) analysis (NSA) distribution of influence with depth of Dynamic soil-pile interaction (DSPI) 020101 civil engineering 02 engineering and technology Structural engineering multiline plastic link elements (MPLE) 0201 civil engineering Nonlinear system lcsh:TA1-2040 after-shock Pile business lcsh:Engineering (General). Civil engineering (General) Geology |
Zdroj: | Građevinski Materijali i Konstrukcije, Vol 61, Iss 1, Pp 63-89 (2018) Građevinski materijali i konstrukcije (2018) 61(1):63-89 |
ISSN: | 2335-0229 2217-8139 |
Popis: | Comparative non-linear static (NSA) and non-linear dynamic analyses (NDA) of 2D frames (as parts of skeletal 3D structures) of RC buildings founded on piles are presented in this paper. In order to produce a more realistic presentation of behaviour of a frame structure, the analysis involves a structure-foundation-soil interaction. Also, the model involves a linear-non-linear dynamic pile-soil interaction, using link elements. The foundation consists of drilled piles having 60 cm in diameter. The soil is modelled using Multi-linear plastic link elements, as well as with p-y curves, on both sides of the pile, assuming that p-y curves transfer only compression (p-y curves are experimentally determined non-linear relationships of displacement/pressure in soil, along the depth of a pile). The analysis shows the problems which accompany extraction of a 2D frame, as a representative of a regular 3D space frame. The impact of onset and location of individual plastic hinges on seismic performances of the analyzed structural system are investigated, and relative floor drifts are analyzed. It was concluded that the analysis of 2D frame, in the interaction with the foundation and soil, may provide sufficiently accurate results of behaviour and assessments of seismic performances of skeletal RC multi-storey building. It is important, because introduction of a spatial structure in such analyses is very complex and challenging. |
Databáze: | OpenAIRE |
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