Dynamic effect of metro-induced vibration on the rammed earth base of the Bell Tower

Springerplus. 2016 Jun 30;5(1):935. doi: 10.1186/s40064-016-2627-1. eCollection 2016.

Abstract

Xi'an Bell Tower (the Bell Tower) is a state-level ancient relic in China. The vibration caused by metro will exert adverse effect on the Bell Tower. This paper aims at presenting 3D-FEM models to predict the peak period velocity (PPV) of rammed earth base when the metro passing through the Bell Tower. The calculation results are compared with those of field test. Both results were found to be in good agreement. Furthermore, the results indicated that the effect of shock absorption measures is significant. The shock absorption tracks can obviously decrease the vibration of the Bell Tower, and the maximum decrease of PPV of the rammed earth base is 78.91 %. The proposed prediction has the potential to be developed as a decision and management tool for the evaluation of the risk associated with the influence of vibration caused by metro on buildings in urban areas.

Keywords: FEM; Metro vibration; Peak particle velocity (PPV); The Bell Tower; Tunnel.