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Parametric study on energy demands for steel special concentrically braced frames

机译:钢材能源需求的参数研究特殊正度支撑框架

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Structures are designed in such a way that they behave in a nonlinear manner when subject to strong ground motions. Energy concepts have been widely used to evaluate the structural performance for the last few decades. Energy based design can be expressed as the balance of energy input and the energy dissipation capacity of the structure. New research is needed for multi degree of freedom systems (MDOFs)-real structures-within the framework of the energy based design methodology. In this paper, energy parameters are evaluated for low-, medium- and high-rise steel special concentrically braced frames (SCBFs) in terms of total energy input and hysteretic energy. Nonlinear dynamic time history analyses are carried out to assess the variation of energy terms along the height of the frames. A seismic energy demand spectrum is developed and hysteretic energy distributions within the frames are presented.
机译:结构设计成使得当受到强烈的地面运动时它们以非线性方式行事。 能源概念已被广泛用于评估过去几十年的结构性表现。 基于能量的设计可以表示为能量输入的平衡和结构的能量耗散能力。 需要进行多项自由度系统(MDOFS) - 建筑物的新研究 - 在基于能量的设计方法的框架内。 在本文中,在总能量输入和滞后能量方面,评估了低,中型和高层钢特殊同心支撑框架(SCBF)的能量参数。 非线性动态时间历史分析进行了分析,以评估沿帧的高度的能量术语的变化。 开发了地震能量需求谱,并呈现了框架内的滞后能量分布。

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