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Performance Based Seismic Design Using Normalized Hysteretic Energy

机译:基于性能的地震设计,使用标准化滞后能量

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The content of the paper is the formulation of normalized hysteretic energy, which may be capable for quantifying performance criteria under varying earthquake ground motions as the basic requirement of performance based seismic design during severe earthquakes. In this context total input seismic energy is visualized as the sum of strain, kinetic, damping, and hysteretic energy. As a philosophy of seismic resistant design for multi-level seismic design, the frequent earthquake may be quantified through sum of strain and kinetic energy only because the structure is understood to be linearly elastic. For moderate earthquake, energy may be partially damping and kinetic in addition to the strain energy and rare earthquake effect shall be equated with the sum of strain energy, kinetic energy, damping energy and effectively by hysteretic energy. Thus the controlling energy for the rare earthquake is the hysteretic energy. As a result, the hysteretic energy is recorded as damage energy, which may be obtained as the difference of the total input seismic energy and the sum of the strain, kinetic and damping energy. For this a simple expression for hysteretic energy has been derived. Using the equilibrium equation in terms of energy parameters-hysteretic energy has been estimated through analysis, design of steel building frames under varying earthquake ground motions. Subsequently, a method for evaluation of performance criteria using normalized hysteretic has been proposed.
机译:本文的含量是标准化的滞后能量的制剂,其能够能够在变化的地震地面运动下量化性能标准作为严重地震期间基于性能的地震设计的基本要求。在这种情况下,总输入地震能量被可视化为应变,动力学,阻尼和滞后能量的总和。作为用于多层次地震设计的地震抗性设计的哲学,频繁的地震可以通过应变和动能的总和量化,因为结构被理解为线性弹性。对于中等地震,能量可以部分阻尼,并且除了应变能量之外,罕见的地震效应应等同于应变能量,动能,阻尼能量的总和,有效地通过滞后能量。因此,罕见地震的控制能量是滞后能量。结果,滞后能量被记录为损坏能量,这可以作为总输入地震能量的差异和应变,动力学和阻尼能量的总和。对于这,已经推导出滞后能量的简单表达。通过分析估算了在能量参数 - 滞后能量方面的平衡方程,估计了各种地震地面运动下的钢结构框架。随后,提出了一种用于评估使用归一化滞后评估性能标准的方法。

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