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首页> 外文期刊>Shock and vibration >Seismic Performance of Midstory Isolated Structures under Near-Field Pulse-Like Ground Motion and Limiting Deformation of Isolation Layers
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Seismic Performance of Midstory Isolated Structures under Near-Field Pulse-Like Ground Motion and Limiting Deformation of Isolation Layers

机译:近场脉冲状地震动和隔离层极限变形作用下中层隔震结构的抗震性能

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Excessive deformation of the isolation layer in midstory isolated structures may occur under strong near-field pulse-like ground motion, which would result in the overturning collapse of the superstructure. The objective of the present research is to limit excessive deformation of the isolation layer and to reduce nonlinear response of midstory isolated structures. To this end, a protective system is presented to limit deformation of the isolation layer by soft pounding. Based on the Kelvin pounding model, a mechanical model is put forward for this protective system. In addition, a new method has been proposed that synthesizes artificial near-field pulse-like ground motion by combining the real near-field nonpulse ground motion with simple equivalent pulses. Also, the impact of artificial near-field pulse-like ground motion on the nonlinear response of midstory isolated structures and the deformation of the isolation layer has been investigated. The effectiveness of the midstory isolation with the protective system has been validated. The results show that the maximum deformation of the isolation layer significantly exceeds the allowable deformation of lead-rubber bearings when subjected to near-field pulse-like ground motion, and it causes the lead-rubber bearings destruction. The proposed protective system is effective in restricting the excessive deformation of the isolation layer and reducing nonlinear responses of the isolated structure, preventing collapse of the superstructure.
机译:在强烈的近场脉冲状地面运动下,中层隔震结构中的隔震层可能会发生过度变形,这将导致上部结构的倾覆塌陷。本研究的目的是限制隔离层的过度变形并减少中间隔离结构的非线性响应。为此,提出了一种保护系统,以通过软冲击来限制隔离层的变形。基于开尔文冲击模型,提出了该保护系统的力学模型。另外,已经提出了一种通过将实际的近场非脉冲地震动与简单的等效脉冲相结合来合成人工近场脉冲状地震动的新方法。此外,还研究了人工近场脉冲状地震动对中层隔震结构非线性响应和隔震层变形的影响。中间层与保护系统隔离的有效性已得到验证。结果表明,隔震层的最大变形量明显大于铅橡胶轴承在承受近场脉冲状地震动时的允许变形,从而导致铅橡胶轴承的破坏。所提出的保护系统有效地限制了隔离层的过度变形并减少了隔离结构的非线性响应,从而防止了上层建筑的坍塌。

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