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Conceptual Seismic Design of Regular Frames Based on the Concept of Uniform Damage

机译:基于均匀损伤概念的规则框架概念抗震设计

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The objective of this study was to propose a seismic design methodology for moment-resisting frames to limit the extent of structural damage and distribute this damage uniformly along the height. This permits the efficient utilization of the energy dissipation capacity of most structural members to avoid undesirable dynamic responses, e.g., the formation of story mechanisms and/or the amplification of story drifts caused by P-delta effect. The proposed methodology is based on the utilization of seismic design lateral load patterns to obtain a uniform distribution of story ductility ratios along the height. It is demonstrated that, on average, frame structures designed based on the proposed approach exhibit a more uniform distribution of story ductility and story drift ratios when compared to the distributions obtained using current U.S. seismic code provisions. Designs based on the proposed approach are expected to provide increased protection against global collapse and loss of life during a strong earthquake event.
机译:这项研究的目的是为抗弯框架提出一种抗震设计方法,以限制结构破坏的程度并沿高度均匀分布这种破坏。这允许有效利用大多数结构构件的能量消散能力来避免不期望的动态响应,例如,层机制的形成和/或由P-δ效应引起的层漂移的放大。所提出的方法是基于利用地震设计的横向荷载模式来获得沿高度的层延性比的均匀分布。结果表明,与使用当前的美国地震法规规定所获得的分布相比,基于所提出的方法设计的框架结构平均显示出层延展性和层错率的更均匀分布。预期基于提议方法的设计将提供更大的保护,以防止在强烈地震事件中发生全局崩溃和生命损失。

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