A BNWF APPROACH TO ASSESS THE RESPONSE OF SINGLE PILE SUBJECTED TO FAR-FIELD AND NEAR-FIELD EARTHQUAKES

被引:0
|
作者
Ajom, B.E. [1 ]
Dasgupta, K. [1 ]
Dey, A. [1 ]
机构
[1] Indian Institute of Technology Guwahati, Guwahati, India
关键词
Earthquake effects - Pile driving;
D O I
暂无
中图分类号
学科分类号
摘要
Kinematic responses of single fixed-head vertical piles in homogeneous loose sand profile under far-field and near-field ground motions have been studied. For numerical simulation of soil-pile interaction, Beam on Nonlinear Winkler Foundation (BNWF) modelling technique has been adopted. The soil and pile behaviours are represented using nonlinear Winkler springs and beam-column elements, respectively. The Winkler springs are modelled using a series of p–y, t-z and Q-z curves to represent the lateral and axial soil– pile interaction. To obtain the free-field earthquake motions for application at the free ends of the nonlinear p-y springs along the depth of the pile, nonlinear site response analyses have been carried out separately. This study focuses on assessing the impact of ground motion characteristics, longitudinal reinforcement percentages and pile diameter on the nonlinear response of piles. The response of a single pile has been studied considering the minimum and maximum reinforcement criteria recommended by the relevant Indian Codes of Practice. The outcomes of the study are presented in terms of maximum bending moments of the pile, stress-strain histories of the pile material and plastic hinge lengths. © 2024, International Association for Earthquake Engineering. All rights reserved.
引用
收藏
相关论文
共 50 条
  • [41] Modeling the near-field and far-field modes of single spatial mode laser diodes
    Sun, Haiyin
    OPTICAL ENGINEERING, 2012, 51 (04)
  • [42] Single Far-Field or Near-Field Source Localization With Sparse or Uniform Cross Array
    Wu, Xiaohuan
    Zhu, Wei-Ping
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2020, 69 (08) : 9135 - 9139
  • [43] OTA testing of near-field and far-field communication links
    Engiz, B. Korunur
    Lodro, M.
    Greedy, S.
    Thomas, D. W. P.
    ELECTRONICS LETTERS, 2023, 59 (19)
  • [44] Far-Field Control of Nanoscale Hotspots by Near-Field Interference
    Singh, Anshuman
    Hugall, James T.
    Calbris, Gaetan
    van Hulst, Niek F.
    ACS PHOTONICS, 2020, 7 (09) : 2381 - 2389
  • [45] Thermally excited near-field radiation and far-field interference
    Kajihara, Yusuke
    Kosaka, Keishi
    Komiyama, Susumu
    OPTICS EXPRESS, 2011, 19 (08): : 7695 - 7704
  • [46] Near-field data compression for the far-field computation in FDTD
    Pascaud, Romain
    Gillard, Raphael
    Loison, Renaud
    Wiart, Joe
    Wong, Man-Fai
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2006, 48 (06) : 1155 - 1157
  • [47] Near-field null constraints in array far-field synthesis
    Vescovo, R
    IEEE ANTENNAS AND PROPAGATION SOCIETY SYMPOSIUM, VOLS 1-4 2004, DIGEST, 2004, : 4104 - 4107
  • [48] Near-field to far-field transformation for an outdoor RCS range
    Inasawa, Yoshio
    Kuroda, Shinji
    Kakizaki, Ken-ichi
    Nishikawa, Hitoshi
    Yoneda, Naofumi
    Makino, Shigeru
    IEICE TRANSACTIONS ON ELECTRONICS, 2008, E91C (09) : 1463 - 1471
  • [49] Near-Field Far-Field Transformations with Unknown Probe Antennas
    Paulus, Alexander
    Eibert, Thomas F.
    2023 17TH EUROPEAN CONFERENCE ON ANTENNAS AND PROPAGATION, EUCAP, 2023,
  • [50] Near-Field Far-Field Transformation for Circular Aperture Antennas
    Capozzoli, Amedeo
    Curcio, Claudio
    Liseno, Angelo
    2017 IEEE INTERNATIONAL WORKSHOP ON MEASUREMENT AND NETWORKING (M&N), 2017, : 114 - 117