Seismic Response of Bridge Pier in Deep Water Considering close Fluid-Structure Interaction Effects

Author:

Wang Zhi Hua1,Gu Chong Shi1,Chen Guo Xing2

Affiliation:

1. Hohai Unversity

2. Nanjing University of Technology

Abstract

Based on the Navier-Stokes equations which are set up with the arbitrary Lagrange-Euler description, a finite element model considering close fluid-structure interaction (FST) is established to analyze the seismic response of bridge piers in the deep water. The influence of close FSI on the bridge pier is analyzed including the relative displacement, shear force and bending moment. In addition, the close FSI and its effects are discussed with respect to different water levels. The results of the case study indicate that the displacement and internal force will become larger obviously when the FSI is considered. Effects of the close FSI on seismic response of the pier are related to the frequency characteristics of the input earthquake wave. The larger the peak displacement of input earthquake wave, the larger the FSI effects on the displacement response of the pier are and the smaller the FSI effects on the internal force response of the pier. Additionally, the effect of the water level on internal force response of the pier is more remarkable than that on the displacement response of the pier.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference7 articles.

1. Suchithra N, Koola P M. A study of wave impact on horizontal slabs[J]. Ocean Engineering, 1995, 22(7): 687-697.

2. Yamada, Y., Iemura, H., Kawano, K., et al. Seismic response of off-shore structures in random seas[J]. Earthquake Engineering and Structural Dynamics, 1989, 18(7): 965-981.

3. Lai W., Wang J. J, Hu S D. Earthquake induced hydrodynamic pressure on bridge pier[J]. Journal of Tongji University, 2004, 32(1): 1-5. (in Chinese).

4. Li F. R, Chen G. X, Wang Z. H. Seisimic responses of single-column pier considering the effects of hydrodynamic pressure[J]. Earthquake Engineering and Engineering Vibration, 2008, 28(2): 114-121. (in Chinese).

5. Bai D. G., Chen G. X., Wang Z. H. Dynamic analysis of a single-column under ground motion and wave action[J]. World Earthquake Engineering, 2008, 24(4): 83-88. (in Chinese).

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