首页> 外文期刊>Advanced Steel Construction: An International Journal >FLUID VISCOUS DAMPER-BASED SEISMIC RETROFIT STRATEGIES OF STEEL STRUCTURES: GENERAL CONCEPTS AND DESIGN APPLICATIONS
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FLUID VISCOUS DAMPER-BASED SEISMIC RETROFIT STRATEGIES OF STEEL STRUCTURES: GENERAL CONCEPTS AND DESIGN APPLICATIONS

机译:基于流体粘性阻尼器的钢结构抗震策略:一般概念和设计应用

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摘要

Two advanced seismic protection technologies, represented by a dissipative bracing system and a damped cable system, both incorporating fluid viscous dampers as passive control devices, are examined with special reference to their use in retrofitting steel structures. The essential characteristics and performance of the dampers and the two technologies, along with their analytical and computational modelling criteria, are recalled in the first part of this paper. A demonstrative design study concerning the application of both systems to an Italian pre-normative steel school building is then presented, by discussing the mechanical parameters, dimensions, layouts and locations selected for the relevant constituting elements. The advantages of the two rehabilitation hypotheses are assessed in terms of the mutual performance objectives formulated at a preliminary design stage, based on the results of the modal and non-linear dynamic analyses carried out during the final verification phase. Structural implementation and technical installation details are finally provided for both retrofit solutions.
机译:考察了以耗散支撑系统和阻尼电缆系统为代表的两种先进的地震防护技术,它们都将流体粘性阻尼器作为被动控制装置,并特别提及了它们在钢结构翻新中的使用。本文的第一部分回顾了风门和两种技术的基本特性和性能,以及它们的分析和计算建模标准。然后,通过讨论机械参数,尺寸,布局和为相关构成元素选择的位置,对这两种系统在意大利标准钢制学校建筑中的应用进行了演示设计研究。根据在最终验证阶段进行的模态和非线性动态分析的结果,根据在初步设计阶段制定的相互性能目标,评估了两种康复假说的优势。最后提供了两种改造解决方案的结构实施和技术安装细节。

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