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On the design and seismic response of RC frame buildings designed with Eurocode 8

机译:关于使用欧洲规范8设计的RC框架建筑物的设计和地震响应

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Performance-Based Seismic Design is now widely recognized as the pre-eminent seismic design and assessment methodology for building structures. In recognition of this, seismic codes may require that buildings achieve multiple performance objectives such as withstanding moderate, yet frequently occurring earthquakes with minimal structural and non-structural damage, while withstanding severe, but rare earthquakes without collapse and loss of life. These objectives are presumed to be satisfied by some codes if the force-based design procedures are followed. This paper investigates the efficacy of the Eurocode 8 force-based design provisions with respect to RC frame building design and expected seismic performance. Four, eight, and 16-storey moment frame buildings were designed and analyzed using the code modal response spectrum analysis provisions. Non-linear time-history analyses were subsequently performed to determine the simulated seismic response of the structures and to validate the Eurocode 8 force-based designs. The results indicate the design of flexural members in medium-to-long period structures is not significantly influenced by the choice of effective member stiffness; however, calculated interstorey drift demands are significantly affected. This finding was primarily attributed to the code's enforcement of a minimum spectral ordinate on the design spectrum. Furthermore, design storey forces and interstorey drift demand estimates (and therefore damage), obtained by application of the code force-based design procedure varied substantially from those found through non-linear time-history analysis. Overall, the results suggest that though the Eurocode 8 may yield life-safe designs, the seismic performance of frame buildings of the same type and ductility class can be highly non-uniform.
机译:基于性能的抗震设计现已被广泛认为是建筑结构的卓越抗震设计和评估方法。认识到这一点,地震法规可能要求建筑物达到多个性能目标,例如承受中度而频繁发生的地震,将结构和非结构性破坏降至最低,同时承受严重但罕见的地震而无坍塌和生命损失。如果遵循基于力的设计程序,则可以通过某些规范来实现这些目标。本文研究了基于欧洲规范8力的设计规定对钢筋混凝土框架建筑设计和预期抗震性能的有效性。使用代码模态响应频谱分析规定设计和分析了4层,8层和16层的时刻框架建筑物。随后进行了非线性时程分析,以确定结构的模拟地震响应并验证基于Eurocode 8力的设计。结果表明,中长期结构中抗弯构件的设计不受有效构件刚度的选择的显着影响。但是,计算得出的层间漂移需求会受到显着影响。这一发现主要归因于代码在设计频谱上实施了最小频谱纵坐标。此外,通过应用基于代码力的设计程序获得的设计层力和层间漂移需求估计值(以及因此造成的破坏)与通过非线性时间历史分析得出的结果大不相同。总体而言,结果表明,尽管Eurocode 8可能会提供生命安全的设计,但相同类型和延性等级的框架建筑物的抗震性能却可能非常不均匀。

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