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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Energy factors of trilinear SDOF systems representing damage-control buildings with energy dissipation fuses subjected to near-fault earthquakes
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Energy factors of trilinear SDOF systems representing damage-control buildings with energy dissipation fuses subjected to near-fault earthquakes

机译:三线性SDOF系统的能量因数,表示具有破坏性建筑物的破坏控制建筑物,该建筑物具有耗能熔断器,承受近断层地震

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This paper presents the energy factor of trilinear single-degree-of-freedom (SDOF) systems representing low-to medium rise damage-control buildings equipped with energy dissipation fuses under near-fault earthquake ground motions, and the focus is given to the ultimate stage of the systems. The hysteretic behaviour of a damage-control building structure with energy dissipation fuses is firstly idealised by the trilinear kinematic model, and the rationality of the trilinear idealisation is validated by the test result of a representative damage control structure. Subsequently, the hysteretic law is assigned to SDOF systems and the seismic demand of the systems quantified by the energy factor is examined through extensive nonlinear dynamic analyses with an ensemble of near-fault earthquake ground motions as input excitations. Based on the statistical investigations of more than twenty-one (21) million inelastic spectral analyses of SDOF systems subjected to ground motions, the effect of the post-yielding stiffness ratios and the corresponding inelastic deformation range of the multiple yielding stages on the energy factor of the trilinear SDOF systems are examined in detail, and the corresponding empirical expressions for quantifying the energy factor demand are also developed. The observations of this work show that the energy factor of trilinear SDOF systems subjected to near-fault earthquake ground motions is appreciably influenced by the hysteretic parameters in multiple yielding stages, and engineers have sufficient flexibility to modulate the seismic energy balance of the system by adjusting these influential parameters. The proposed empirical expressions offer a practical tool for estimating the energy factor of a low-to-medium rise damage-control buildings equipped with energy dissipation fuses subjected to near-fault ground motions in the preliminary design phase.
机译:本文介绍了三线性单自由度(SDOF)系统的能量因数,该系统代表了在近断层地震地震动下装有消能熔断器的中低层破坏控制建筑物。系统的阶段。首先通过三线性运动学模型理想化了带有耗能保险丝的破坏控制建筑结构的滞后行为,并通过代表性破坏控制结构的测试结果验证了三线性理想化的合理性。随后,将滞后定律分配给SDOF系统,并通过将近断层地震地面运动作为输入激励,通过广泛的非线性动力学分析来检查由能量因数量化的系统的地震需求。基于对SDOF系统进行地面运动的二十一(21)百万次非弹性频谱分析的统计调查,屈服后刚度比和多个屈服阶段相应的非弹性变形范围对能量因子的影响详细研究了三线性SDOF系统,并开发了量化能量因数需求的相应经验表达式。这项工作的观察结果表明,在近屈服地震地震动下,三线性SDOF系统的能量因数在多个屈服阶段受磁滞参数的影响很大,工程师具有足够的灵活性来通过调节来调节系统的地震能量平衡。这些有影响力的参数。拟议的经验表达式为估算在初步设计阶段中配备了承受近断层地震动的耗能熔断器的中低层破坏控制建筑物的能量因数提供了一种实用的工具。

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