Shaking table test of subgrade slope reinforced by gravity retaining wall with geogrids

被引:0
作者
Honglue Qu
Xue Huang
Yanan Gao
Zhe Zhang
Chenxu Wang
机构
[1] Southwest Petroleum University,School of Geoscience and Technology
[2] China University of Mining and Technology,State Key Laboratory for Geomechanics and Deep Underground Engineering
来源
Earthquake Engineering and Engineering Vibration | 2022年 / 21卷
关键词
gravity retaining wall with geogrids; Hilbert-Huang transform; marginal spectrum; failure mode; shaking table test;
D O I
暂无
中图分类号
学科分类号
摘要
Gravity retaining wall with geogrids has showed excellent seismic performance from Wenchuan great earthquake. However, seismic damage mechanism of this kind of wall is not sufficiently clear. In view of this, a large shaking table test of the gravity retaining wall with geogrids to reinforce the subgrade slope was carried out, and based on the Hilbert-Huang transform and the marginal spectrum theory, the energy identification method of the slope dynamic failure mode was studied. The results show that the geogrids can effectively reduce displacement and rotation of the retaining wall, and it can effectively absorb the energy of the ground movement when combined with the surrounding soil. In addition, it also reveals the failure development of the gravity retaining wall with geogrids to reinforce the subgrade slope. The damage started in the deep zone near the geogrids, and then gradually extended to the surface of the subgrade slope and other zones, finally formed a continuous failure surface along the geogrids. The analysis results of the failure mode identified by the Hilbert marginal spectrum are in good consistency with the experimental results, which prove that the Hilbert marginal spectrum can be applied to obtain the seismic damage mechanism of slope.
引用
收藏
页码:715 / 727
页数:12
相关论文
共 72 条
[1]  
Battista BM(2007)Application of the Empirical Mode Decomposition and Hilbert-Huang Transform to Seismic Reflection Data Geophysics 72 29-37
[2]  
Knapp C(2003)A Technique to Improve the Empirical Mode Decomposition in the Hilbert-Huang Transform Earthquake Engineering and Engineering Vibration 2 75-86
[3]  
McGee T(2016)Energy Identification Method for Dynamic Failure Mode of Bedding Rock Slope with Soft Strata Chinese Journal of Geotechnical Engineering 38 959-966
[4]  
Goebel V(2016)Dynamic Response and Dynamic Failure Mode of a Weak Intercalated Rock Slope Using a Shaking Table Rock Mechanics and Rock Engineering 49 3243-3256
[5]  
Chen YB(1994)Consistent Inelastic Design Spectra: Hysteretic and Input Energy Earthquake Engineering & Structural Dynamics 23 523-537
[6]  
Feng Q(2003)The Application of Reinforcement Soil Technique in Gravity Retaining Wall Design Optimization of Capital Construction 24 42-43
[7]  
Fan G(2014)Structural Modal Parameter Identification and Damage Diagnosis Based on Hilbert-Huang Transform Earthquake Engineering and Engineering Vibration 13 101-111
[8]  
Zhang JJ(1998)The Empirical Mode Decomposition and the Hilbert Spectrum for Nonlinear and Non-stationary Time Series Analysis Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 454 903-995
[9]  
Fu X(1989)Earthquake Load for Structural Reliability Journal of Structural Engineering 115 1446-1462
[10]  
Wang ZJ(1988)Elastic-Plastic Response Spectra for Different Hysteretic Rules Earthquake Engineering & Structural Dynamics 16 555-568