首页> 外文期刊>Journal of structural engineering >Shaking Table Study on Displacement-Based Design for Seismic Retrofit of Existing Buildings Using Nonlinear Viscous Dampers
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Shaking Table Study on Displacement-Based Design for Seismic Retrofit of Existing Buildings Using Nonlinear Viscous Dampers

机译:基于位移的基于非线性粘性阻尼器的既有建筑物抗震改造设计研究

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This paper presents the experimental and analytical results of a shaking-table study on the elastic and inelastic behavior of a 2/3-scale three-story steel structure retrofitted by the nonlinear viscous dampers. The properties of the dampers used in the test are designed based on the displacement-based design procedure. The retrofitted frame exhibits moderate inelastic behavior under the design ground motion of the 275% El Centra earthquake. The lateral floor displacements, story drifts, floor accelerations, story shears, and damper axial forces measured from the frame tested are compared with those obtained from the displacement-based method as well as the nonlinear time-history analysis. It is shown from the study that the addition of nonlinear viscous dampers to the structure results in displacement and force reduction by about 68 to 80% under the 30% El Centra earthquake (PGA = 0.1 g). Higher-mode responses are significantly diminished. In addition, the displacement and acceleration responses of the structure with dampers are appropriately captured by analytical models in the elastic range. The differences between the experimental and analytical results become noticeable in the inelastic range. The displacement-based evalration procedure tends to underestimate the responses of the damped structure in the elastic range and overestimate them in the inelastic range.
机译:本文介绍了振动台研究的实验和分析结果,该振动台研究是由非线性粘性阻尼器改型的2/3级三层钢结构的弹性和非弹性行为。测试中使用的阻尼器的性能是基于基于位移的设计程序进行设计的。在275%的El Centra地震的设计地面运动下,加固后的框架表现出中等的非弹性性能。从测试框架测得的侧向地板位移,层间位移,层间加速度,层间剪切力和阻尼器轴向力与基于位移的方法以及非线性时程分析所获得的力进行了比较。研究表明,在30%El Centra地震(PGA = 0.1 g)下,在结构中增加非线性粘性阻尼器可导致位移和力减小约68%至80%。较高模式的响应将大大减少。此外,带有阻尼器的结构的位移和加速度响应可以通过弹性范围内的分析模型适当地捕获。在非弹性范围内,实验结果与分析结果之间的差异变得明显。基于位移的评估程序倾向于低估阻尼结构在弹性范围内的响应,而高估它们在非弹性范围内的响应。

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