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SEISMIC PERFORMANCE ASSESSMENT OF A SEVEN-STORY WOOD-STEEL HYBRID BUILDING

机译:七层木-钢混合结构房屋的抗震性能评估

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Performance based seismic design (PBSD) is a design paradigm which is beginning to be applied for steel and concrete structures. The ability of PBSD to incorporate various types of performance requirements and account for innovative construction techniques makes it a powerful tool, particularly in the design of new structural configurations. Modern mixed-use mid-rise wood frame buildings (4-8 stories) are ideal for combining a steel moment frame (SMF) at the first and/or second level to open the lower levels up for retail shops with wood used for the upper residential levels. The SMF provides enough strength for gravity load to support the upper levels, while providing substantial ductility and shear capacity. The interaction between the SMF and wood components for mid-rise woodframe buildings has not been adequately studied. The system behavior is not explicitly accounted for in existing building codes, other than the standard requirements for stiffness between successive story levels (e.g. IBC). In this paper, a seven-story structure, whose 1st-story is assumed to be a steel SMF supports six upper stories made of light-frame wood construction, is used as an example to illustrate a logical PBSD procedure which can be applied to these types of "hybrid" structures. The basic idea is that with the preliminary design of the wood portion of the building known, the effective stiffness of the steel frame can be determined based on the desired performance, which was assumed to be correlated with peak inter-story drift. Through this numerical study, the application of PBSD to wood-steel hybrid structures was illustrated and verified.
机译:基于性能的抗震设计(PBSD)是一种设计范例,已开始应用于钢结构和混凝土结构。 PBSD能够结合各种类型的性能要求并考虑到创新的施工技术,这使其成为一个功能强大的工具,尤其是在设计新的结构配置时。现代化的混合用途中高层木结构建筑(4至8层)是在第一层和/或第二层结合钢制矩型框架(SMF)的理想选择,从而为零售商店的下层打开,而上层则使用木材住宅楼层。 SMF为重力载荷提供了足够的强度以支撑上层,同时提供了可观的延展性和剪切能力。对于中层木结构建筑,SMF与木材组件之间的相互作用尚未得到充分研究。除了在连续的楼层之间的刚度的标准要求(例如IBC)以外,现有建筑规范中并未明确考虑系统行为。在本文中,以一个七层结构为例,该结构的第一层假定为钢制SMF,支撑着六个由轻型木结构建筑制成的高层建筑,并以此为例说明了逻辑PBSD程序,该程序可以应用于这些结构。 “混合”结构的类型。基本思想是,在已知建筑物木材部分的初步设计后,即可根据所需性能确定钢框架的有效刚度,并假定其与层间峰值漂移相关。通过此数值研究,说明并验证了PBSD在木-钢混合结构中的应用。

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