A Study on Seismic Dynamic Response of Pile-Supported Tunnels in Deep Backfill Area of Soil–Rock Mixture Based on a Model Test

Author:

Li Hanlin1,Jin Xiaoguang1,Sun Guodong1,He Jie1

Affiliation:

1. School of Civil Engineering, Chongqing University, Chongqing 400038, China

Abstract

Aiming to address the problem of construction and environmental risks in tunnel construction through the soil–rock mixture backfill area, this paper carried out a seismic dynamic response model test of a pile-supported tunnel based on practical projects. Firstly, the stress–strain curves and failure characteristics of the soil–rock mixture in the study area were obtained through triaxial tests, and based on this, similar materials for the model test were developed. Then, a vibration table model test was devised to investigate the seismic dynamic response of the pile–tunnel structure. The findings revealed the following: when subjected to seismic waves, the soil–rock mixture stratum displayed a “skin effect” in its acceleration response, indicating that closer proximity to the surface led to heightened horizontal acceleration responses; the horizontal peak acceleration of the grouting mixture stratum in the vertical direction exhibited a “Zigzag” pattern; the peak values of strain response and bending moment in the tunnel lining cross-section exhibited an “X” shape and inverted “V” shape, respectively. The bending moment at the pile crown increased alongside the peak value of the input seismic wave acceleration. The maximum surface settlement in the model ranged from 0.5 to 1 cm, with the tunnel–pile structure effectively mitigating surface settlement.

Funder

Science and Technology Project of the Fifth Engineering Co., Ltd., China Railway 21st First Bureau Group

Publisher

MDPI AG

Reference18 articles.

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4. Experimental study on dynamic response of tunnel lining structure orthogonal under-crossing a landslide under earthquake;Pai;J. Rock Mech. Geotech. Eng.,2022

5. Vibration Acceleration Responses of Crossing Tunnels of Highway and Railway under Different Directions of Seismic Loads;Lai;China Railw. Sci.,2021

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