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Modeling seismic response of a full-scale cold-formed steel-framed building

机译:大型冷弯型钢框架建筑的地震响应建模

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The objective of this paper is to present finite element modeling protocols and validation studies for the seismic response of a two-story cold-formed steel-framed building with oriented strand board sheathed shear walls. Recently, shake table testing of this building was completed by the authors. The building provides an archetype for modern details of cold-formed steel construction, and provides benchmarks for the seismic response of the building system, subsystem, and components. The seismic response of buildings framed from cold-formed steel has seen little study in comparison with efforts on isolated members and shear walls. Validated building-scale models are needed to expand our understanding of the seismic response of these systems. Finite element models corresponding to the archetype building during its various test phases are developed in OpenSees and detailed herein. For cold-formed steel framed buildings accurate seismic models require consideration of components beyond the isolated shear walls, e.g. the stiffness and capacity of the gravity framing is included in the model. Such decisions require model refinement beyond what is typically performed and details for completing this effort accurately and efficiently are described herein. In addition, nonstructural components, including exterior sheathing of the gravity framing, interior gypsum sheathing for the shear walls and gravity framing, and interior partition walls, are included in the building model based on nonlinear surrogate models that utilize experimental characterization of member-fastener-sheathing response. Comparisons between the developed models and testing for natural period, story drift, accelerations, and foundation hold-down forces validate the model. Performance of the tested archetype building is better than predicted by design or typical engineering assumptions. The model developed herein provides insights into how the building achieves its beneficial performance and will be used to further quantify the lateral resistance of each subsystem and the extent of their coupling. In addition, the protocols used to develop the model herein provide a first examination of the necessary modeling characteristics for wider archetype studies of cold-formed steel-framed buildings and the development and substantiation of seismic response modification coefficients. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文的目的是为带有定向刨花板护套剪力墙的两层冷弯型钢框架建筑的地震响应提供有限元建模协议和验证研究。最近,作者完成了对该建筑物的振动台测试。该建筑为冷弯钢结构的现代细节提供了原型,并为建筑系统,子系统和组件的地震反应提供了基准。与对孤立构件和剪力墙的努力相比,用冷弯型钢构筑的建筑物的地震响应研究很少。需要经过验证的建筑规模模型来扩展我们对这些系统的地震响应的理解。在OpenSees中开发了与原型建筑在各个测试阶段相对应的有限元模型,并在此进行了详细介绍。对于冷弯型钢框架建筑,准确的地震模型需要考虑隔离剪力墙以外的构件,例如该模型包括重力框架的刚度和承载力。此类决策需要对模型进行精炼,超出通常执行的模型,并且在此描述了准确而有效地完成此工作的细节。此外,基于非线性替代模型的建筑模型包括非结构性组件,包括重力框架的外部护套,剪力墙和重力框架的内部石膏护套以及内部隔墙,这些模型利用了构件紧固件的实验特性护套反应。已开发模型与自然周期,故事漂移,加速度和地基压紧力的测试之间的比较验证了该模型。经过测试的原型建筑的性能优于设计或典型工程假设所预测的性能。本文开发的模型提供了有关建筑物如何实现其有益性能的见解,并将用于进一步量化每个子系统的侧向阻力及其耦合程度。此外,本文中用于开发模型的协议为对冷弯钢框架建筑的更广泛原型研究以及地震响应修正系数的发展和证实提供了必要的建模特性的首次检查。 (C)2017 Elsevier Ltd.保留所有权利。

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