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Shake table tests of a full-scale two-story sheathing-braced cold-formed steel building

机译:大型两层带护套冷弯型钢结构建筑的振动台试验

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Shake table tests are particularly indicative to assess dynamic properties and seismic response under earthquakes in the case of a new building structure. In last years the University of Naples was involved in the research project named "Energy Efficient Lightweight-Sustainable-SAfe-Steel Construction" (Project acronym: ELISSA), which was devoted to the development and demonstration of enhanced prefabricated lightweight CFS skeleton dry wall constructions with improved antiseismic properties. Within the ELISSA project, in order to evaluate the global building seismic response, shake table tests on a full-scale two-storey building, named "ELISSA mockup", were carried out. The mockup was tested in two different conditions. In the first condition the mockup included mainly structural components of walls, floors and roof, whereas in the second condition it was completed with all nonstructural components. This paper presents the testing program and the obtained results in terms of dynamic identification (fundamental period and damping ratio) and earthquake performance (global lateral response, building drift, acceleration amplification, diaphragm response, and observed damage). (C) 2017 Elsevier Ltd. All rights reserved.
机译:对于新的建筑结构,振动台测试尤其可用于评估地震作用下的动力特性和地震响应。去年,那不勒斯大学参与了名为“节能轻质-可持续-安全-钢结构”的研究项目(项目缩写:ELISSA),该项目致力于开发和演示增强型预制轻质CFS骨架干墙结构。具有改进的抗震性能。在ELISSA项目中,为了评估全球建筑物的地震响应,对名为“ ELISSA样机”的两层全尺寸建筑物进行了振动台测试。样机在两种不同条件下进行了测试。在第一种情况下,实体模型主要包括墙壁,地板和屋顶的结构组件,而在第二种情况下,实体模型包含所有非结构性组件。本文根据动态识别(基本周期和阻尼比)和地震性能(整体横向响应,建筑物漂移,加速度放大,振动膜响应和观察到的破坏)介绍了测试程序和获得的结果。 (C)2017 Elsevier Ltd.保留所有权利。

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