Redirigiendo al acceso original de articulo en 15 segundos...
ARTÍCULO
TITULO

Estimation of random uncertainty of the seismic interstory drift ratio of reinforced concrete frames taking into account the variability of concrete elasticity modulus in Bogota

Daniel Mauricio Ruiz Valencia    
Maria Claudia Borrero Chaux    
María Patricia León Neira    
Hermes Ariel Vacca Gámez    

Resumen

Based on the modulus of elasticity of concrete (E) and the geometry of the structural elements, the displacements of reinforced concrete structures are assessed by designers. The authors compiled and statistically analyzed the information of concrete strength tests, f`c with measurement of E (more than 1500 tests). Afterwards, a design of 5-story buildings was done following the specifications of the NSR-10 (AIS, Asociación Colombiana de Ingeniería Sísmica, 2010) and using two of the design spectrums of the recent seismic micro-zoning of Bogota (year 2010). With these buildings and with 1500 random numbers for f `c and E (based on the statistic analyses of laboratory tests), 6000 computer simulations, varying E and f´c, was done to determine the seismic drifts (as a percentage of the interstory distance) of the buildings. Seismic drifts were determined from spectral modal analyses and equivalent horizontal force analysis. In agreement with the results, the seismic drifts would be in average 147% of the seismic design drifts. Additionally, in average, 67 of each 100 buildings of five floors designed and constructed in Bogota with the NSR-10 would have seismic drifts higher than 1%. For that reason, the authors propose to modify the formula of the elasticity modulus included in the NSR 10 (at least for Bogota), in order to make a safer and reliable estimation of E and the seismic drifts.Rev. ing. constr. [online]. 2013, vol.28, n.1, pp. 95-106. ISSN 0718-5073.  http://dx.doi.org/10.4067/S0718-50732013000100006

 Artículos similares

       
 
Abderrazak Barkat, Said Kenai, Belkasem Menadi, El-Hadj Kadri and Jamal Khatib    
Self-compacting concrete (SCC) production is a complex operation that requires finding a good combination and suitable dosages for its constituents. Several formulation methods have been developed to meet the workability requirements of SCC. Mortar sprea... ver más
Revista: Infrastructures

 
Melisa Herrera, Diego Sosa, Sigifredo Díaz and Jessica Thangjitham    
Current construction codes require detailed analyses for structural retrofitting, which must consider performance during seismic events. Therefore, the computational models used to evaluate existing infrastructure require nonlinear structural analysis an... ver más
Revista: Applied Sciences

 
Ziwei Zhang    
Concrete is a highly regarded construction material due to many advantages such as versatility, durability, fire resistance, and strength. Hence, having a prediction of the compressive strength of concrete (CSC) can be highly beneficial. The new generati... ver más
Revista: Buildings

 
Frank Liebold, Franz Wagner, Josiane Giese, Szymon Grzesiak, Christoph de Sousa, Birgit Beckmann, Matthias Pahn, Steffen Marx, Manfred Curbach and Hans-Gerd Maas    
Carbon-reinforced concrete (CRC) is increasingly utilized in construction, due to its unique properties, such as corrosion resistance, high-tensile strength, and durability. Understanding its behavior under different loads is crucial to ensuring its safe... ver más
Revista: Buildings

 
Jae-Do Kang, Eun-Rim Baek and Sung-Ho Park    
For measuring the structural health of buildings, high-performance vibration detection devices are used in a structural health monitoring (SHM) system, which consists of a sensor and a data logger. Those devices are seismographs or devices with high-perf... ver más
Revista: Buildings