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SHAKE TABLE TESTING OF GRAVITY LOAD DESIGNED REINFORCED CONCRETE FRAMES WITH UNREINFORCED MASONRY INFILL WALLS

机译:带有未砌体填充墙的重力荷载设计的钢筋混凝土框架的振动台测试

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A large number of existing buildings, particularly those constructed prior to the enforcement of ductile design philosophy of 1970's, were primarily designed and detailed to resist gravity loads. Structures of this type do not have the current reinforcement detailing required by modern codes in high and medium seismic zones and, hence, they are considered potential life-safety hazards. In addition, the presence of masonry infill walls was often ignored by engineers since they are normally considered as architectural elements. However, lessons learned from past earthquakes and from several tests performed have shown that those walls tend to interact with the bounding frame when the structural system is subjected to moderate or severe earthquake ground motions and that such interaction may or may not be beneficial to the performance of the structure. This paper presents the first part of an experimental testing program carried out at the University of British Columbia (UBC) in Vancouver, Canada testing the performance of 1/2 scale Gravity Load Designed Reinforced Concrete (GLDRC) frames with Unreinforced Masonry Walls. The first part of this testing program consisted of one monotonic loading test on an Infilled frame and two series of shake table tests, one on an Infilled frame and one on a Bare frame with the UBC Earthquake Engineering Research Facility (EERF) unidirectional shake table.
机译:大量现有建筑物,特别是在执行1970年代韧性设计理念之前建造的建筑物,其主要设计和详细说明可抵抗重力载荷。在高地震和中地震带中,这种类型的结构没有现代规范要求的当前钢筋细节,因此,它们被认为是潜在的生命安全危害。另外,砌筑填充墙的存在经常被工程师忽略,因为它们通常被认为是建筑元素。但是,从过去的地震中吸取的经验教训和进行的几次试验表明,当结构系统经受中度或严重地震地震动时,这些墙往往会与边界框架相互作用,并且这种相互作用可能对性能无益,也可能无益。结构。本文介绍了在加拿大温哥华的不列颠哥伦比亚大学(UBC)进行的实验测试程序的第一部分,该程序测试了1/2重力荷载设计的无筋砌筑墙的钢筋混凝土(GLDRC)框架的性能。该测试程序的第一部分包括使用UBC地震工程研究设施(EERF)单向振动台在填充框架上进行一次单调加载测试和两个系列的振动台测试,一个在填充框架上进行,一个在裸机上进行。

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