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Principal results of the inelastic seismic performance of a 17-story RC building located in the soft-soil area in Mexico City with normal-strength concrete and with high-strength concrete

机译:墨西哥城软土地区17层RC建筑物使用普通强度混凝土和高强度混凝土的无弹性抗震性能的主要结果

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The principal responses of the inelastic seismic performance of a 17-story reinforced concrete building located in the soft-soil of Mexico City, with normal-strength concrete (f_c= 250 kg/cm~2) and with high-strength concrete (f_c= 700 kg/cm~2), are analyzed. The designs are made according to the 2004 Mexico City Building Code, RDF-04. The design results are compared, after making spectral modal dynamic analysis, as well as the non-linear responses from the step-by-step dynamic analysis with the SCT-EW record of the 1985 earthquakes. Use of high-strength concretes (f_c > 400 kg/cm~2) in reinforced concrete columns improves a great deal its axial load strength, and, therefore, in front of actions where compression high loads predominate, its performance is very adequate. In every analyzed case, reviewing the shear forces, the corresponding strength is never reached; that is, there is always a reserve strength, which is larger in high-strength concrete buildings; for this case a bigger quantity of transverse reinforcement by confinement was required because the design conditions for transverse reinforcement must be more demanding as the f_c value increases.
机译:墨西哥城软土,高强度混凝土(f_c = 250 kg / cm〜2)和高强度混凝土(f_c = 700 kg / cm〜2)进行分析。设计是根据2004年墨西哥城建筑法规RDF-04进行的。在进行了频谱模态动态分析之后,将设计结果进行了比较,以及逐步动态分析与1985年地震的SCT-EW记录的非线性响应。在钢筋混凝土柱中使用高强度混凝土(f_c> 400 kg / cm〜2)可以大大提高其轴向载荷强度,因此,在压缩高载荷占主导的作用之前,其性能非常合适。在每种分析的情况下,只要查看剪切力,就永远不会达到相应的强度。也就是说,总是有储备强度,在高强度混凝土建筑中会更大。在这种情况下,由于f_c值增加,对横向加固的设计条件的要求更高,因此需要通过约束使用更大数量的横向加固。

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