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Evaluation of soil–foundation–structure interaction effects on seismic response demands of multi-story MRF buildings on raft foundations

机译:地基-结构相互作用对筏基多层MRF建筑地震响应要求的评估

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Soil conditions have a great deal to do with damage to structures during earthquakes. Hence the investigation on the energy transfer mechanism from soils to buildings during earthquakes is critical for the seismic design of multi-story buildings and for upgrading existing structures. Thus, the need for research into soil–structure interaction (SSI) problems is greater than ever. Moreover, recent studies show that the effects of SSI may be detrimental to the seismic response of structure and neglecting SSI in analysis may lead to un-conservative design. Despite this, the conventional design procedure usually involves assumption of fixity at the base of foundation neglecting the flexibility of the foundation, the compressibility of the underneath soil and, consequently, the effect of foundation settlement on further redistribution of bending moment and shear force demands. Hence the SSI analysis of multi-story buildings is the main focus of this research; the effects of SSI are analyzed for typical multi-story building resting on raft foundation. Three methods of analysis are used for seismic demands evaluation of the target moment-resistant frame buildings: equivalent static load; response spectrum methods and nonlinear time history analysis with suit of nine time history records. Three-dimensional FE model is constructed to investigate the effects of different soil conditions and number of stories on the vibration characteristics and seismic response demands of building structures. Numerical results obtained using SSI model with different soil conditions are compared to those corresponding to fixed-base support modeling assumption. The peak responses of story shear, story moment, story displacement, story drift, moments at beam ends, as well as force of inner columns are analyzed. The results of different analysis approaches are used to evaluate the advantages, limitations, and ease of application of each approach for seismic analysis.
机译:土壤条件与地震期间建筑物的破坏有很大关系。因此,对于地震过程中从土壤到建筑物的能量传递机制的研究对于多层建筑物的抗震设计和现有结构的升级至关重要。因此,对土壤与结构相互作用(SSI)问题进行研究的需求比以往任何时候都更为迫切。此外,最近的研究表明,SSI的影响可能不利于结构的地震响应,而在分析中忽略SSI可能会导致设计不保守。尽管如此,传统的设计程序通常会假设基础的固定性而忽略了基础的柔韧性,地下土壤的可压缩性,因此基础沉降对弯矩和剪力需求的进一步重新分配的影响。因此,多层建筑物的SSI分析是本研究的重点。分析了基于筏板基础的典型多层建筑的SSI效果。三种分析方法用于目标抗弯框架建筑物的地震需求评估:等效静载荷;抗震能力;抗震能力;抗震能力。响应频谱方法和非线性时程分析,并带有九个时程记录。建立三维有限元模型,研究不同土壤条件和层数对建筑结构振动特性和地震响应要求的影响。将使用SSI模型在不同土壤条件下获得的数值结果与对应于固定基础支撑模型假设的数值结果进行比较。分析了故事剪力,故事力矩,故事位移,故事漂移,梁端力矩以及内柱力的峰值响应。不同分析方法的结果用于评估每种方法在地震分析中的优势,局限性和易用性。

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