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A study on the effects of the foundation compliance on the response of yielding structures using dimensional analysis

机译:基于尺寸分析的地基柔度对屈服结构响应的影响研究

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The effects of the foundation compliance on the dynamic response of yielding systems are evaluated using rigorous dimensional analysis. To this end, a soil-foundation-structure system is subjected to strong ground motion and its seismic response is determined in terms of dimensionless parameters. The seismic demand of the system is calculated as a function of meaningful engineering parameters, such as the yielding acceleration and yielding displacement of the structure, the system mass and damping, as well as the dynamic characteristics of the foundation. It is proved that the seismic demand is strongly dependent on the foundation to excitation pulse predominant frequency ratio. For large values of yielding acceleration, the demand depends strongly on the yielding displacement and the mass. Moreover, there is a strength range where an increase in strength results in an increase in displacements-a counter intuitive situation. The larger the yielding displacement, the larger the seismic demand. Furthermore, the larger the foundation soil mass, the larger the seismic demand. Finally, an application of the procedure on an actual structure proves that soil-foundation-structure interaction (SFSI) is not always beneficial for the structure.
机译:使用严格的尺寸分析评估基础柔度对屈服系统动力响应的影响。为此,土壤-基础-结构系统要经受强烈的地面运动,并根据无量纲参数确定其地震响应。系统的地震需求是根据有意义的工程参数计算的,例如结构的屈服加速度和屈服位移,系统质量和阻尼以及地基的动力特性。事实证明,地震需求强烈依赖于激励脉冲占主导地位的频率比。对于较大的屈服加速度值,需求很大程度上取决于屈服位移和质量。此外,在强度范围内,强度的增加导致位移的增加,这与直觉相反。屈服位移越大,地震需求越大。此外,基础土壤质量越大,地震需求越大。最后,将该程序应用于实际结构证明了土-基础-结构相互作用(SFSI)并不总是有益于结构。

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