arrow
返回

Surface wave isolation by variable depth infilled trenches

delete2024-11-01
delete0
PRE
AI
C
Chenzhi Cai
Y
Yuankai Xu
L
Lei Gao *
S
Supeng Deng
DOI:10.1016/j.scitotenv.2024.176071delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Excessive environmental vibrations generated by urban traffic pose adverse effects on nearby structures and residents. These vibrations are predominantly carried by surface waves, which are localized within the surface layer of soil. The isolation of surface waves through the embedding of periodic wave barriers in soils between the source and the receiver has gained significant attention in recent years. In this paper, a novel approach is proposed for isolating surface waves induced by urban traffic through the use of variable depth infilled trenches. This innovative design not only achieves efficient surface wave isolation but also minimizes the consumption of structural materials. Based on the measured dominant frequency range of rail transit and the available soil parameters, variable depth infilled trenches are designed with suitable dimensions. The eigenvalue equation is solved using the finite element method to derive the dispersion relations and bandgap of identical regularly spaced trenches. To study the efficacy of the proposed structure, a finite element model of the soil-infilled trench system is developed using COMSOL. The mechanism underlying the isolation of surface wave is elucidated, and the effect of variable angle alpha on the isolation efficiency within 40-50 Hz eta((40-50Hz)) of surface waves is studied. The results of this study reveal that for variable angle alpha of 15 degrees, the surface wave isolation efficiency within 40-50 Hz eta((40-50Hz)) is 90.9 % and 92.5 % for uniformly increasing depth infilled trenches and uniformly decreasing depth infilled trenches, respectively. Although the surface wave isolation efficiencies predicted for the variable depth infilled trench arrangements are only 93.8 % and 95.5 % of those predicted for the regularly spaced identical infilled trenches, the variable depth arrangements result in a remarkable 34 % reduction in material usage. These findings highlight the potential of the proposed variable depth infilled trenches as a cost-effective and efficient solution for surface wave isolation.
Keyword:
Environmental vibrations
Surface waves
Vibration isolation
Variable depth infilled trenches
Bandgap

期刊

Science of The Total Environment 封面图
Science of The Total Environment
IF:
8
论文数:
7.1W
被引数:
46.4W

机构

C
Central South University
学者数:
10.0W
论文数: 7.2W
被引数: 10.9W
引用论文

引用论文

Based on auxetic foam: A novel type of seismic metamaterial for Lamb waves
err2021-11-01
err153
PREAI
errHuang, Ting Ting; Ren, Xin; Zeng, Yi; Zhang, Yi; Luo, Chen; Zhang, Xiang Yu; Xie, Yi Min
err分享
err收藏
Seismic metamaterials: Generating low-frequency bandgaps induced by inertial amplification
err2022-05-01
err64
errOAAI
errZeng, Yi; Cao, Liyun; Wan, Sheng; Guo, Tong; Wang, Yan-Feng; Du, Qiu-Jiao; Assouar, Badreddine; Wang, Yue-Sheng
err分享
err收藏
Novel periodic pile barrier with low-frequency wide bandgap for Rayleigh waves
err2023-04-01
err31
PREAI
errZhao, Chunfeng; Chen, Changqiang; Zeng, Chao; Bai, Wen; Dai, Junwu
err分享
err收藏
Experimental observation of locally-resonant and Bragg band gaps for surface guided waves in a phononic crystal of pillars
err2011-03-14
err247
PREAI
errAchaoui, Younes; Khelif, Abdelkrim; Benchabane, Sarah; Robert, Laurent; Laude, Vincent
err分享
err收藏
Prediction and mitigation of train-induced vibrations of large-scale building constructed on subway tunnel
err2019-06-01
err198
PREAI
errYang, Jianjin; Zhu, Shengyang; Zhai, Wanming; Kouroussis, Georges; Wang, Yue; Wang, Kaiyun; Lan, Kai; Xu, Fangzheng
err分享
err收藏
err分享
err收藏
err分享
err收藏
学者 查看更多内容