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Seismic safety of valuable non-structural elements in RC buildings: Floor Response Spectrum approaches

机译:钢筋混凝土建筑中有价值的非结构元素的地震安全性:楼层响应谱法

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The seismic performances of non-structural (NS) components belonging to the category of "valuable elements", i.e. elements characterized by high value in terms of economic, cultural or strategic purposes, represent nowadays a crucial aspect in seismic safety design and assessment of new and existing buildings. Actually, most valuable NS elements are simply-supported objects, which can be classified as acceleration-sensitive NS elements. Frequently, these elements can be considered dynamically uncoupled from the primary structure to which they are connected, thereby justifying the Floor Response Spectrum methods usually adopted in literature and by most of building codes. This paper presents an extensive parametric study of floor response spectra obtained by linear and nonlinear numerical modeling of RC structures. Two sets of 30 horizontal ground motion scaled acceleration records are generated according to the Ultimate Limit State (ULS) and the Damage Limitation State (DLS) spectra adopted for building design. The numerical floor response spectra and those proposed by codes and international standards are critically compared, and the Peak Floor Acceleration (PFA) and the Peak Floor Velocity (PFV) profiles along the building height are discussed. Finally, a simplified method based on the "stability charts" is developed to assess the seismic safety of free standing NS elements located at the upper floors of the host buildings.
机译:属于“重要元素”类别的非结构性(NS)组件的抗震性能,即在经济,文化或战略目的方面具有高价值的元素,如今已成为抗震设计和评估新安全的关键方面。和现有建筑物。实际上,最有价值的NS元素是简单支持的对象,可以将其归类为对加速度敏感的NS元素。通常,可以将这些元素视为与它们所连接的主要结构动态分离,从而证明文献和大多数建筑法规通常采用的楼层响应频谱方法是合理的。本文对通过钢筋混凝土结构的线性和非线性数值建模获得的地板响应谱进行了广泛的参数研究。根据建筑设计采用的极限极限状态(ULS)和破坏极限状态(DLS)光谱,生成两组30个水平地面运动缩放的加速度记录。严格地比较了数值地板响应谱以及由规范和国际标准提出的响应谱,并讨论了沿建筑物高度的峰底加速度(PFA)和峰底速度(PFV)曲线。最后,开发了一种基于“稳定性图表”的简化方法,以评估位于主楼高层的独立式NS单元的地震安全性。

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