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A probabilistic simplified Seismic Model from Ambient Vibrations (SMAV) of existing reinforced concrete buildings

机译:现有钢筋混凝土建筑物环境振动(SMAV)的概率简化地震模型

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SMAV (Seismic Model from Ambient Vibrations) is a mathematical model for predicting the seismic response of an existing building subjected to earthquake that produces no severe damage. The model is based on the identification of the building experimental modal parameters from ambient vibration together with few information about its geometry and constructive typology. The dynamic response of the structure is obtained by a modal superposition where all the inertial properties are concentrated in the center of gravity of the floors or floor sections. The non-linear behavior, which typically occurs during even nondestructive earthquakes, is considered by assigning appropriate laws of variation to the natural frequencies as the deformation increases. This paper presents the development of SMAV to reinforced concrete frame buildings with infill walls and the application to real cases. Specific Frequency Shift Curves (FSCs), that relates the vibration amplitude to the variations of the natural frequencies, have been developed. Such FSCs are a fundamental feature of SMAV, because they allow the seismic nonlinear behavior to be simulated through an equivalent iterative linear analysis. Therefore, in order to comply with the declared aim, in this work the attention is focused on the definition of a suitable simplified model for the generation of FSCs, valid for reinforced concrete frame buildings with infill walls. In the adopted model the global behavior of the infilled frame is simulated by considering the two components of the system, i.e the bare frame and the infill masonry panel, as working in parallel. The mutual interaction between them is modeled by suitably modifying the collapsing mechanism of the masonry panel. The stochastic approach for modeling the seismic response of infilled RC buildings, considering different kinds of infills and taking account of the nonlinearity which arises during a seismic event, is illustrated in detail. The validation of the FSCs has been performed by using the experimental seismic response of buildings as recorded by permanent accelerometric monitoring systems. Finally, two case studies related to the seismic response recorded on a regular and an irregular building, respectively, are presented by comparing the computed end experimental seismic dynamic responses, in order to prove the SMAV ability in reproducing the behavior of RC infilled frame buildings subjected to nondestructive earthquakes.
机译:Smav(来自环境振动的地震模型)是一种用于预测经受发生严重损害的地震的现有建筑物的地震反应的数学模型。该模型基于与环境振动的建筑实验模态参数的识别,以及几何和建设性类型的少数信息。结构的动态响应是通过模叠叠加获得的,其中所有惯性特性集中在地板或地板部分的重心中。通常在甚至非虚拟地震期间发生的非线性行为是通过将适当的变化定律分配给自然频率随着变形而增加。本文介绍了用填充墙的钢筋混凝土框架建筑物的开发,并在实际情况下应用。已经开发出特定的频移曲线(FSC),其与自然频率的变化相关的振动幅度。这种FSC是Smav的基本特征,因为它们允许通过等同的迭代线性分析模拟地震非线性行为。因此,为了遵守宣布的目的,在这项工作中,注意力集中在适用于FSC的合适简化模型的定义,适用于带填充墙壁的钢筋混凝土框架建筑。在采用的模型中,通过考虑系统的两个组件,即裸露的框架和填充砌体面板,以并行工作来模拟infilled帧的全局行为。它们之间的相互相互作用是通过适当地修改砌体面板的塌陷机构来建模的。详细说明了考虑不同种类的填充物,考虑不同种类的填充物的地震响应的随机方法,并考虑了地震事件期间出现的非线性。通过使用永久加速度监测系统记录的建筑物的实验地震响应来执行FSCS的验证。最后,通过比较计算的最终实验地震动态响应,以分别对常规和不规则建筑记录的地震反应有关的两个案例研究,以便证明在经历的RC Infiled框架建筑物的行为中的Smav能力对非破坏性地震。

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