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Modeling of energy dissipation in structural devices and foundation soil during seismic loading
Authors:Sivapalan Gajan  Duraisamy S Saravanathiiban
Institution:1. Department of Civil Engineering, North Dakota State University, NDSU Dept. # 2470, P.O. Box 6050, Fargo, ND 58108-6050, USA;2. Department of Civil and Environmental Engineering, Michigan State University, East Lansing, MI, USA
Abstract:Though rocking shallow foundations could be designed to possess many desirable characteristics such as energy dissipation, isolation, and self-centering, current seismic design codes often avoid nonlinear behavior of soil and energy dissipation beneath foundations. This paper compares the effectiveness of energy dissipation in foundation soil (during rocking) with the effectiveness of structural energy dissipation devices during seismic loading. Numerical simulations were carried out to systematically study the seismic energy dissipation in structural elements and passive controlled energy dissipation devices inserted into the structure. The numerical model was validated using shaking table experimental results on model frame structures with and without energy dissipation devices. The energy dissipation in the structure, drift ratio, and the force and displacement demands on the structure are compared with energy dissipation characteristics of rocking shallow foundations as observed in centrifuge experiments, where shallow foundations were allowed to rock on dry sandy soil stratum during dynamic loading. For the structures with energy dissipating devices, about 70–90% of the seismic input energy is dissipated by energy dissipating devices, while foundation rocking dissipates about 30–90% of the total seismic input energy in foundation soil (depending on the static factor of safety). Results indicate that, if properly designed (with reliable capacity and tolerable settlements), adverse effects of foundation rocking can be minimized, while taking advantage of the favorable features of foundation rocking and hence they can be used as efficient and economical seismic energy dissipation mechanisms in buildings and bridges.
Keywords:Earthquake  Rocking  Soil&ndash  structure interaction  Soil&ndash  foundation interaction  Shallow foundations  Passive control devices
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