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Displacement-Based Seismic Design Procedure for Framed Buildings with Dissipative Braces Part I: Theoretical formulation

机译:基于位移的磨损建筑物的地震设计程序,耗散姿势第一部分:理论制剂

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The insertion of steel braces equipped with dissipative devices proves to be very effective in order to enhance the performance of a framed building under horizontal seismic loads. Multi-level design criteria were proposed according to the Performance-Based Design, in order to get, for a specific level of the seismic intensity, a designated performance objective of the building (e.g., an assigned damage level of either the framed structure or non-structural elements). In this paper a design procedure aiming to proportion braces with hysteretic dampers in order to attain, for a specific level of the seismic intensity, a designated performance level of the building is proposed. Exactly, a proportional stiffness criterion, which assumes the elastic lateral storey-stiffness due to the braces proportional to that of the unbraced frame, is combined with the Direct Displacement-Based Design, in which the design starts from target deformations. A computer code has been prepared for the nonlinear static and dynamic analyses, using a step-by-step procedure. Frame members and hysteretic dampers are idealized by bilinear models.
机译:配备有耗散装置的钢支架的插入证明是非常有效的,以便在水平地震载荷下提高框架建筑的性能。根据基于性能的设计提出了多级设计标准,以便获得特定水平的地震强度,建筑物的指定性能目标(例如,框架结构的指定损伤水平或非 - 结构元素)。在本文中,提出了一种设计过程,其具有滞后阻尼器的比例支撑,以便获得建筑物的特定水平的特定水平。正是,一种比例刚度标准,其假设由于与未吹控框架成比例的支架引起的弹性横向层状刚度与基于直接位移的设计组合,其中设计从目标变形开始。使用逐步过程为非线性静态和动态分析准备了一种计算机代码。框架构件和滞后阻尼器由双线性模型理想化。

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