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3D analysis of in-filled trench as passive barriers for ground vibration isolation
Authors:GuangYun Gao  Gang Shi  ShiJin Feng  Chang Qiu
Institution:(1) Department of Geotechnical Engineering, Tongji University, Shanghai, 200092, China;(2) Key Laboratory of Geotechnical and Underground Engineering of Ministry of Education, Tongji University, Shanghai, 200092, China;(3) Shanghai Pudong Construction Project Management Co. Ltd., Shanghai, 201203, China
Abstract:The three-dimensional (3D) problem of the ground vibration isolation by an in-filled trench as a passive barrier is studied theoretically. Integral equations governing Rayleigh wave scattering are derived based on the Green’s solution of Lamb problem. The integral equations are solved accurately and efficiently with an iteration technique. They are used to evaluate the complicated Rayleigh wave field generated by irregular scatterers embedded in an elastic half-space solid. The passive isolation effectiveness of ground vibration by the in-filled trench for screening Rayleigh wave is further studied in detail. Effects of relevant parameters on the effectiveness of vibration isolation are investigated and presented. The results show that a trench filled with stiff backfill material gets a better isolation effect than a soft one, and increasing the depth or width of the in-filled trench also improves its screening effectiveness. The effectiveness and the area of the screened zone are surging with the increase in the length of the in-filled trench. Supported by the National Natural Science Foundation of China (Grant Nos. 50678128 and 50538010) and the Research Fund for PhD Student of Chinese College (Grant No. 20050247030)
Keywords:Rayleigh wave scattering  integral equation  in-filled trench  passive isolation  ground vibration
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