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Shake table testing of a miniature steel building with ductile-anchor, uplifting-column base connections for improved seismic performance

机译:带有延性锚固,起重柱基础连接的微型钢结构房屋的振动台测试,以提高抗震性能

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Previous research has demonstrated that uplifting-column or rocking building systems may exhibit improved seismic performance, including reductions in total base shear and decreased residual drift, when compared with systems rigidly connected to the foundation. These beneficial effects may be due to lengthened periods, activation of rocking modes, and energy dissipation of base fuse elements. In the current work, several configurations of a miniature steel building with different combinations of base connection and traditional superstructure fuse strength and stiffness were subjected to identical earthquake motions to evaluate differences in demands and performance. The uplifting base connections incorporate highly ductile concrete anchors with long stretch lengths, allowing robust connection performance and easy replacement of damaged connection elements following the seismic event, an advantage over previously tested systems. Testing and dynamic numerical analysis indicates that ductile anchor uplifting systems may reduce total base shear by over 20%, as well as reducing residual structural drift by more than 80%.
机译:先前的研究表明,与刚性连接到基础的系统相比,隆起或摇摆的建筑系统可能会表现出更好的抗震性能,包括总基础剪力的减小和残余位移的减小。这些有益的影响可能是由于周期延长,摇摆模式的激活以及基础保险丝元件的能量耗散。在当前工作中,将具有不同基础连接和传统上层建筑熔断器强度和刚度组合的微型钢结构的几种配置进行相同的地震运动,以评估需求和性能的差异。提升的基础连接件具有高延展性的高延展性混凝土锚,从而具有鲁棒的连接性能,并在地震后易于更换损坏的连接件,这是优于先前测试的系统的优势。测试和动态数值分析表明,延性锚固提升系统可将总基础剪切力降低20%以上,并将残余结构位移降低80%以上。

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