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Seismic Rehabilitation of an Existing Braced Frame Hospital Building by Direct Replacement with Buckling-Restrained Braces

机译:通过直接用屈曲约束支撑代替现有支撑框架医院建筑的地震修复

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Buckling-restrained braces may be used for both new design and retrofit applications where increased seismic performance levels are desired relative to traditional buckling braces. As a retrofit technology, buckling-restrained braces may be used to augment strength, stiffness, or damping in an existing lateral force resisting system.In the case of the seismic rehabilitation of the steel-framed hospital building at the Department of Veterans Affairs Seattle campus, buckling-restrained braces were used as a direct replacement of the existing braced frame braces. Where possible, the new braces were connected to the existing gusset plates. This implementation technique may be applied in future rehabilitation projects where ductile details are lacking or increased performance levels are desired.This paper focuses on the unique challenges encountered during the analysis, design, and construction phases of the seismic rehabilitation. Analysis topics will include the development of buckling-restrained brace nonlinear hinge properties and the use of performance-based design techniques to verify seismic performance while minimizing demands on the existing columns and connections. Design phase topics will include brace to gusset connection design and reframing at the existing interstitial floor to allow for brace erection. Construction phase topics will focus on maintaining the continued operation of the hospital functions, which was an important consideration during the entire project.
机译:屈曲约束支撑可用于新设计和翻新应用,与传统的屈曲支撑相比,在这些应用中需要提高抗震性能。作为一种改进技术,可以在现有的横向抗力系统中使用屈曲约束的撑杆来增加强度,刚度或阻尼。 在西雅图退伍军人事务部校园内的钢架医院大楼进行地震修复的情况下,屈曲约束支撑被直接替换为现有的支撑框架支撑。在可能的情况下,将新的撑杆连接到现有的角撑板。此实施技术可以应用于缺少延展性细节或需要提高性能水平的将来的康复项目。 本文重点讨论在地震修复的分析,设计和施工阶段遇到的独特挑战。分析主题将包括屈曲约束支撑非线性铰链特性的开发以及基于性能的设计技术的使用,以验证抗震性能,同时最大程度地减少对现有立柱和连接的要求。设计阶段的主题将包括支撑到角撑板的连接设计,以及在现有的填隙地板处重新设计框架,以实现支撑的架设。建设阶段的主题将集中于维持医院功能的持续运行,这是整个项目中的重要考虑因素。

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