Browsing by Author "Kharazian, Alireza"
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Analysis of seismic pounding of moderate-height RC buildings with aligned slabs
Kharazian, Alireza (Universitat Politècnica de Catalunya, 2017-11-23)
Doctoral thesis
Open AccessCollision between adjoining buildings is relevant, since the huge impact forces significantly modify the buildings dynamic behaviour. The separation required by the regulations avoids pounding; however, even in recent ... -
Consideration of pounding and SSI in energy-based seismic design of buildings
Kharazian, Alireza; López Almansa, Francisco; Benavent Climent, Amadeo (Institute of Structural Analysis and Antiseismic Research School of Civil Engineering. National Technical University of Athens (NTUA), 2019)
Conference report
Open AccessThe energy demand on a given construction is commonly determined, in terms of equivalent velocity, from smoothed design spectra that are ordinarily derived after dynamic analyses on SDOF systems. The application to actual ... -
Ensayos en un simulador de terremotos de golpeteo sísmico de una estructura de hormigón
Kharazian, Alireza; López Almansa, Francisco; Benavent Climent, Amadeo; Gallego Molina, Antolino (Asociación Chilena de Sismología e Ingeniería Antisísmica, 2020)
Conference report
Open AccessEste artículo describe ensayos dinámicos unidireccionales de golpeteo (impacto) sísmico de una estructura tridimensional de hormigón efectuados en un simulador de terremotos (“shaking table”). Se consideraron dos excitaciones ... -
New formulation for estimating the damping parameter of the Kelvin-Voigt model for seismic pounding simulation
López Almansa, Francisco; Kharazian, Alireza (2018-11-15)
Article
Open AccessSeismic pounding between adjoining buildings frequently causes serious damage; although collision can be avoided with proper separation, can still occur due to code non-fulfillment, loose requirements of old codes, and ... -
Parametric study of seismic pounding between RC buildings with aligned slabs
López Almansa, Francisco; Kharazian, Alireza (Elsevier, 2019-10)
Article
Open AccessThis paper presents a parametrical study on seismic pounding between pairs of RC frames with 3 and 5 stories and aligned slabs. The performance indices are the maximum inter-story drift, absolute acceleration, and story ... -
Parametric study on the effect of pounding between adjacent buildings with aligned slabs
López Almansa, Francisco; Kharazian, Alireza (European Association for Earthquake Engineering, 2014)
Conference report
Restricted access - publisher's policyThe simplified nonlinear static procedures (conventional pushover) have become a useful tool to assess the seismic performance of buildings. Beyond their inherent static character, such methods include two major inaccuracies: ... -
Shaking table testing on seismic pounding of a RC building structure
Kharazian, Alireza; López Almansa, Francisco; Benavent Climent, Amadeo; Gallego Molina, Antolino (Universidad Politécnica de Madrid (UPM), 2018)
Conference report
Open AccessThis paper describes unidirectional shaking table tests on seismic pounding of a 3-D RC building structure. Two inputs were considered: a seismic accelerogram and a harmonic wave. The tested specimen is a one-and-a-half-story ... -
State-of-the-art of research on seismic pounding between buildings with aligned slabs
Kharazian, Alireza; López Almansa, Francisco (2019)
Article
Open AccessCollision between adjoining buildings with aligned slabs is relevant, since the huge impact forces significantly modify the buildings dynamic behavior. The separation required by the regulations avoids pounding; however, ... -
Study on pounding effect between short-to-mid height rc buildings with aligned slabs
López Almansa, Francisco; Kharazian, Alireza (International Association for Earthquake Engineering, 2017)
Conference report
Restricted access - publisher's policyThis work presents a parametrical numerical study of pounding between short-to-mid height RC framed buildings with aligned slabs. The study consists in analyzing the dynamic response of four 3 and 5-storey prototype colliding ...