首页> 外文会议>ASME Pressure Vessels and Piping conference >EFFECTS OF SOIL-STRUCTURE INTERACTION, DAMPING AND HIGHER MODES ON THE RESPONSE OF A MID-STORY-ISOLATED STRUCTURE FOUNDED ON MULTIPLE SOIL LAYERS
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EFFECTS OF SOIL-STRUCTURE INTERACTION, DAMPING AND HIGHER MODES ON THE RESPONSE OF A MID-STORY-ISOLATED STRUCTURE FOUNDED ON MULTIPLE SOIL LAYERS

机译:土-结构相互作用,阻尼和较高模式对多种土层基础中层隔震结构响应的影响

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This paper focuses on investigating the effects of soil-structure interaction (SSI), higher modes, and damping on the response of a mid-story-isolated structure founded on multiple soil layers overlying bedrock. Closed-form solutions were obtained for the entire system, which consists of a shear beam type superstructure, seismic isolator, and multiple soil layers overlying bedrock, while subjected to ground motion. The proposed formulations simplify the problem in terms of well-known frequency and mechanical impedance ratios that can take into account the effects of SSI, higher modes, and damping in the entire system, and be capable of explicitly interpreting the major dynamic behavior of a mid-story-isolated structure interacting with the multiple soil layers overlying bed rock. The SSI effects on the dynamic response of a mid-story-isolated structure as a result of multiple soil layers overlying bedrock were extensively investigated through a series of parametric studies and physically explained by virtue of derived formulations. In addition, the results of numerical exercises show that higher damping provided by the isolator may provoke higher mode response of the superstructure; that the lower structure below the isolator may have significantly larger deformations compared to those of the upper structure above the isolator; and that isolator displacements may be amplified by the SSI effects while compared to those of mid-story-isolated structures with fixed-base.
机译:本文着重研究土壤-结构相互作用(SSI),高阶模态和阻尼对建立在多层覆盖基岩的土壤层上的中层隔震结构的响应的影响。对于整个系统,获得了封闭形式的解决方案,该系统由剪力梁式上部结构,隔震器和受地震动作用的覆盖基岩的多个土层组成。拟议的公式根据众所周知的频率和机械阻抗比简化了该问题,可以考虑SSI,更高模式和整个系统中的阻尼的影响,并且能够明确地解释中频的主要动态行为。层隔离结构与覆盖基岩的多个土层相互作用。通过一系列参数研究,广泛研究了SSI对中层隔震结构动力响应的影响,该过程是通过覆盖基岩的多个土壤层进行的,并通过派生公式进行了物理解释。另外,数值模拟的结果表明,隔振器提供的较高阻尼可能会激发上部结构的较高模式响应。与隔离器上方的上部结构相比,隔离器下方的下部结构可能具有明显更大的变形;与带有固定底座的中层隔震结构相比,隔震器位移可能会因SSI效应而放大。

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