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Spectral analysis and design approach for high force-to-volume extrusion damper-based structural energy dissipation

机译:基于大推力阻尼器的结构耗能的频谱分析和设计方法

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摘要

High force-to-volume extrusion damping devices can offer significant energy dissipation directly in structural connections and significantly reduce seismic response. Realistic force levels up to 400 kN have been obtained experimentally validating this overall concept. This paper develops spectral-based design equations for their application. Response spectra analysis for multiple, probabilistically scaled earthquake suites are used to delineate the response reductions due to added extrusion damping. Representative statistics and damping reduction factors are utilized to characterize the modified response in a form suitable for current performance-based design methods. Multiple equation regression analysis is used to characterize reduction factors in the constant acceleration, constant velocity, and constant displacement regions of the response spectra. With peak device forces of 10% of structural weight, peak damping reduction factors in the constant displacement region of the spectra are approximately 6.5 x, 4.0 x, and 2.8 x for the low, medium, and high suites, respectively. At T = 1 s, these values are approximately 3.6 x, 1.8 x, and 1.4 x, respectively. The maximum systematic bias introduced by using empirical equations to approximate damping reduction factors in design analyses is within the range of +10 to -20%. The seismic demand spectrum approach is shown to be conservative across a majority of the spectrum, except for large added damping between T =0.8 and 3.5 s, where it slightly underestimates the demand up to a maximum of approximately 10%. Overall, the analysis shows that these devices have significant potential to reduce seismic response and damage at validated prototype device force levels.
机译:高推力体积挤压阻尼装置可直接在结构连接中提供大量能量消耗,并显着降低地震响应。通过实验获得了高达400 kN的真实力水平,从而验证了这一总体概念。本文开发了基于光谱的设计方程,以供其应用。使用多个概率尺度地震套件的响应谱分析来描绘由于增加的挤压阻尼而引起的响应降低。代表性的统计数据和阻尼减小因子用于以适合当前基于性能的设计方法的形式来表征修改后的响应。多方程回归分析用于表征响应谱的恒定加速度,恒定速度和恒定位移区域中的折减因子。当峰值装置力为结构重量的10%时,在低,中和高套件中,光谱的恒定位移区域中的峰值阻尼减小因子分别约为6.5 x,4.0 x和2.8 x。在T = 1 s时,这些值分别约为3.6 x,1.8 x和1.4 x。在设计分析中,使用经验方程式近似阻尼减小因子所引入的最大系统偏差在+10至-20%的范围内。除在T = 0.8到3.5 s之间增加了很大的阻尼外,地震需求频谱方法在大多数频谱中都显示为保守的,在这种情况下,它略微低估了需求,最高可达大约10%。总体而言,分析表明,在经过验证的原型设备受力水平下,这些设备具有降低地震响应和损坏的巨大潜力。

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