首页> 外文期刊>Journal of structural engineering >Earthquake and Postearthquake Fire Testing of a Midrise Cold-Formed Steel-Framed Building. Ⅰ: Building Response and Physical Damage
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Earthquake and Postearthquake Fire Testing of a Midrise Cold-Formed Steel-Framed Building. Ⅰ: Building Response and Physical Damage

机译:地震和底片火灾测试中型冷成型钢框架建筑。 Ⅰ:建立响应和物理损伤

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摘要

To advance understanding of the multihazard performance of midrise cold-formed steel (CFS) construction, a unique multidisciplinary experimental program was conducted on the Large High-Performance Outdoor Shake Table (LHPOST) at the University of California, San Diego (UCSD). The centerpiece of this project involved earthquake and live fire testing of a full-scale 6-story CFS wall braced building. Initially, the building was subjected to seven earthquake tests of increasing motion intensity, sequentially targeting service, design, and maximum credible earthquake (MCE) demands. Subsequently, live fire tests were conducted on the earthquake-damaged building at two select floors. Finally, for the first time, the test building was subjected to two postfire earthquake tests, including a low-amplitude aftershock and an extreme near-fault target MCE-scaled motion. In addition, low-amplitude white noise and ambient vibration data were collected during construction and seismic testing phases to support identification of the dynamic state of the building system. This paper offers an overview of this unique multihazard test program and presents the system-level structural responses and physical damage features of the test building throughout the earthquake-fire-earthquake test phases, whereas the component-level seismic behavior of the shear walls and seismic design implications of CFS-framed building systems are discussed in a companion paper.
机译:为了推进对中霜冷成型钢(CFS)建设的多血淋力性能,在加州大学圣地亚哥(UCSD)的大型高性能户外摇架(LHPOST)上进行了独特的多学科实验计划。该项目的核心涉及地震和现场火灾测试的全尺寸6层CFS墙壁支撑大楼。最初,该建筑物进行了七次地震检验,增加了运动强度,顺序瞄准服务,设计和最大可信地震(MCE)需求。随后,在地震损坏的建筑物上在两个选择楼层进行过火测试。最后,首次进行测试建筑的两次出版地震检验,包括低幅度余震和极端近乎故障目标MCE缩放运动。另外,在施工和地震测试阶段期间收集低幅度白噪声和环境振动数据,以支持建筑系统的动态状态的识别。本文概述了这一独特的多士巴达测试计划,并介绍了整个地震 - 火灾地震检测阶段的测试建筑的系统级结构响应和物理损坏特征,而剪力墙和地震的组成级地震行为CFS框架建筑系统的设计含义在伴侣纸上讨论。

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