Analysis, Design, and Construction of a Base-Isolated Multiple Building Structure
Author(s) -
Stefano Sorace,
Gloria Terenzi
Publication year - 2014
Publication title -
advances in civil engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.379
H-Index - 25
eISSN - 1687-8094
pISSN - 1687-8086
DOI - 10.1155/2014/585429
Subject(s) - base isolation , sizing , base (topology) , situated , structural engineering , pendulum , isolation (microbiology) , characterization (materials science) , plan (archaeology) , computer science , engineering , geology , mechanical engineering , materials science , mathematics , art , mathematical analysis , paleontology , microbiology and biotechnology , frame (networking) , artificial intelligence , visual arts , biology , nanotechnology
The analysis and design of a multiple residential building, seismically protected by a base isolation system incorporating double friction pendulum sliders as protective devices, are presented in the paper. The building, situated in the suburban area of Florence, is composed of four independent reinforced concrete framed structures,mutually separated by three thermal expansion joints.The plan is L-shaped,with dimensions of about 75min the longitudinal direction and about 30malong the longest side of the transversal direction.These characteristics identify the structure as the largest example of a base-isolated "artificial ground" ever built in Italy. The base isolation solution guarantees lower costs, a much greater performance, and a finer architectural look, as compared to a conventional fixed-base antiseismic design.The characteristics of the building and the isolators, the mechanical properties and the experimental characterization campaign and preliminary sizing carried out on the latter, and the nonlinear time-history design and performance assessment analyses developed on the base isolated building are reported in this paper, along with details about the installation of the isolators and the plants and highlights of the construction works. ©2014 S. Sorace and G. Terenzi
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