Frequency Domain Spectral Analysis of Arch Dams under Random Seismic Excitation

被引:0
|
作者
Khandelwal, Deepak [1 ]
Bharti, S. D. [2 ]
Shrimali, M. K. [2 ]
Datta, T. K. [2 ]
机构
[1] Govt Polytech Coll, Dept Civil Engn, Jaipur 302004, Rajasthan, India
[2] Malaviya Natl Inst Technol, Natl Ctr Disaster Mitigat & Management, Jaipur 302017, Rajasthan, India
关键词
Seismic analysis; Arch dam; Random vibration; Power spectral density function (PSDF); Morrow Point arch dam; SYSTEMS;
D O I
10.1061/PPSCFX.SCENG-1561
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Previous research on seismic response analysis of dams primarily treated earthquakes as deterministic events; only a few studies on arch dams have explored earthquakes as random processes. This study introduces a three-dimensional seismic analysis of the Morrow Point arch dam, considering fully correlated random ground motion. The random ground excitation is characterized by the power spectral density function (PSDF) of the Kern County earthquake, for which the response time history is available. The spectral analysis technique describes the PSDF of the dam's response using the desired transfer function derived from Abaqus software. The analysis method is similar to that employed in finding the PSDF of the response of offshore structures from a given wave spectrum (PSDF). The method is validated by confirming the results of the proposed method with those of modal spectral analysis for empty dams and those of the time history analysis of the full reservoir dam. The results from the numerical study show that (1) the PSDF of responses obtained by modal spectral analysis using the first ten modes of the dam matches with those obtained by the direct analysis using transfer functions for the empty dam; and (2) mean peak arch stresses increases along the height of the dam from base to top, whereas mean peak cantilever stresses decreases; further, the mean peak arch stresses are less than the mean peak cantilever stresses at the base.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Comparison of seismic fragility analysis methods for arch dams
    Jin, Aiyun
    Qiu, Yixiang
    Wang, Jinting
    EARTHQUAKE ENGINEERING AND ENGINEERING VIBRATION, 2023, 22 (01) : 173 - 189
  • [2] Comparison of seismic fragility analysis methods for arch dams
    Aiyun Jin
    Yixiang Qiu
    Jinting Wang
    Earthquake Engineering and Engineering Vibration, 2023, 22 : 173 - 189
  • [3] Seismic fragility of arch dams based on damage analysis
    Wang, Jin-Ting
    Zhang, Ming-Xu
    Jin, Ai-Yun
    Zhang, Chu-Han
    SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2018, 109 : 58 - 68
  • [4] Seismic performance assessment of arch dams using incremental nonlinear dynamic analysis
    Pan, Jianwen
    Xu, Yanjie
    Jin, Feng
    EUROPEAN JOURNAL OF ENVIRONMENTAL AND CIVIL ENGINEERING, 2015, 19 (03) : 305 - 326
  • [5] A rapid and automated analysis procedure for seismic response of arch dams
    Du, Yang-Qian
    Wang, Jin-Ting
    Jin, Feng
    Pan, Jian-Wen
    Xiang, Zhi-Qian
    ADVANCES IN ENGINEERING SOFTWARE, 2024, 197
  • [6] Investigating the nonlinear dynamic seismic response of double curvature arch dams under spatial and temporal excitation of heterogeneous ground motion
    Andi, Mohammad Reza Shokri
    Naserabadi, Heydar Dashti
    Beyklarian, Morteza
    REVISTA INTERNACIONAL DE METODOS NUMERICOS PARA CALCULO Y DISENO EN INGENIERIA, 2021, 37 (04):
  • [7] Deformation-based seismic fragility analysis of concrete arch dams
    Jiang, J.-Q. (jianqun@zju.edu.cn), 1839, Zhejiang University (47): : 1839 - 1845
  • [8] Seismic damage characteristics of high arch dams under oblique incidence of SV waves
    Chen, Denghong
    Pan, Ziyue
    Zhao, Yiyuan
    ENGINEERING FAILURE ANALYSIS, 2023, 152
  • [9] Frequency domain analysis method of nonstationary random vibration based on evolutionary spectral representation
    Zhao, Yan
    Si, L. T.
    Ouyang, H.
    ENGINEERING COMPUTATIONS, 2018, 35 (02) : 1098 - 1127
  • [10] Catastrophic Analysis of Nonlinear Response of Arch Dams Under the Horizontal Earthquake
    Sun, Dunben
    Ren, Qingwen
    TRENDS IN CIVIL ENGINEERING, PTS 1-4, 2012, 446-449 : 2745 - 2749