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The acceleration response spectra of a single-degree-of-freedom (s.d.o.f).o.f
This paper presents the recorded accelerograms, acceleration response spectra, and the seismological aspects of the earthquake.
This paper investigates the effect of the differences between "smooth" (e.g., design) earthquake ground motion acceleration response spectra and individual ground motion linear-elastic acceleration response spectra on nonlinear single-degree-of-freedom (SDOF) lateral displacement ductility demands.
Basin effects are quantified and discussed through a period-dependent "aggravation factor", defined as the ratio between 2D and 1D acceleration response spectra at the basin surface.
In this paper, after reviewing the characteristics of earthquake rotational components, the acceleration response spectra of rocking and torsional components are presented.
The average surface displacement, velocity and acceleration response spectra for a typical permafrost site were obtained and the worst case scenario was identified.
Similar(27)
This paper proposes an acceleration response spectrum to predict floors' responses due to occupants jumping.
A total of 32 accelerograms are artificially synthesized based on the design acceleration response spectrum.
Displacement response spectrum (DRS), as the input, is of great significance to the displacement-based design just like the acceleration response spectrum to the traditional force-based design.
In these uncoupled analyses, the separate earthquake response is generally computed using the standard acceleration response spectrum, upon including an additional damping referred to as aerodynamic damping.
This paper presents a design-oriented acceleration response spectrum for calculating a floor׳s response given the floor׳s modal characteristics and a specified confidence level.
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