Soil-structure interaction response considering drift analysis due to three orthogonal components of near-field ground motions

被引:0
作者
Sabermahany H. [1 ]
Attarnejad R. [1 ]
机构
[1] School of Civil Engineering, College of Engineering, University of Tehran, Tehran
来源
Scientia Iranica | 2022年 / 29卷 / 6 A期
关键词
Foundation rocking; Inter-story drift; Nonlinear analysis; Seismic performance; Soil-structure interaction;
D O I
10.24200/SCI.2022.58423.5716
中图分类号
学科分类号
摘要
Soil-structure interaction analysis is one of the most challenging problems in the field of structural engineering. In this paper, two aspects less discussed in the literature, namely: (i) the effect of considering all three components of near-field earthquake excitations instead of just one horizontal component and (ii) elimination of the part of inter-story drifts caused by the foundation rocking, were investigated. Theoretical aspects of both phenomena were considered, and useful considerations were proposed. To provide a more comprehensive description of the suggested modifications, the seismic behavior of a 15-story steel moment-resisting frame building subjected to four near-field earthquake excitations was studied. To this end, 3D nonlinear time-history analysis was conducted using ABAQUS finite element software. The structure is supported by a shallow raft foundation on soft-clayey soil. The results indicate that the two mentioned points are of prime importance and should be considered in the soil-structure interaction analysis due to near-field excitations to evaluate the seismic structural responses more accurately. © 2022 Sharif University of Technology. All rights reserved.
引用
收藏
页码:2953 / 2967
页数:14
相关论文
共 47 条
  • [21] Nguyen Q.V., Fatahi B., Hokmabadi A.S., The effects of foundation size on the seismic performance of buildings considering the soil-foundation-structure interaction, Structural Engineering and Mechanics, 58, 6, pp. 1045-1075, (2016)
  • [22] Nguyen Q.V., Fatahi B., Hokmabadi A.S., Influence of size and load-bearing mechanism of piles on seismic performance of buildings considering soil-pile-structure interaction, International Journal of Geomechanics, 17, 7, (2017)
  • [23] Shahbazi S., Khatibinia M., Mansouri I., Et al., Seismic evaluation of special steel moment frames subjected to near-field earthquakes with forward directivity by considering soil-structure interaction effects, Scientia Iranica, 27, 5, pp. 2264-2282, (2020)
  • [24] Gonzalez Acosta J.L., Vardon P.J., Hicks M.A., Study of landslides and soil-structure interaction problems using the implicit material point method, Engineering Geology, 285, (2021)
  • [25] Phuor T., Harahap I.S.H., Ng C.Y., Et al., Development of the skew boundary condition for soil-structure interaction in three-dimensional nite element analysis, Computers and Geotechnics, 137, (2021)
  • [26] Longo M., Sousamli M., Korswagen P.A., Et al., Substructure-based 'three-tiered' nite element approach to soil-masonry-wall interaction for light seismic motion, Engineering Structures, 245, (2021)
  • [27] Abdollahiparsa H., Homami P., Khoshnoudian F., Effect of vertical component of an earthquake on steel frames considering soil-structure interaction, KSCE Journal of Civil Engineering, 20, 7, pp. 2790-2801, (2016)
  • [28] Iranian code of practice for seismic resistance design of buildings, (2014)
  • [29] Rahvar, Geotechnical investigation and foundation design report of Mahshahr train station, (2006)
  • [30] Design of steel structures - Part 1-5: General rules-Plated structural elements, (2006)