Xiaohui SU
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A nonlinear analysis of dynamic interactions of CFRD-compressible reservoir system based on FEM-SBFEM
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Indexed by:期刊论文

Date of Publication:2018-09-01

Journal:SOIL DYNAMICS AND EARTHQUAKE ENGINEERING

Included Journals:SCIE

Volume:112

Page Number:24-34

ISSN No.:0267-7261

Key Words:SBFEM; Concrete-faced rockfill dam; Water compressibility; Generalized plasticity model; Dam-water interaction

Abstract:Reservoir water compressibility is a major factor affecting dynamic dam reservoir interactions, and most studies focus on the analysis of concrete dams. However, few studies have been conducted with respect to the effects of reservoir water compressibility on the dynamic response of CFRDs (concrete-faced rockfill dams). Furthermore, new researches show the hydrodynamic pressure is significant for evaluating the seismic performance of high CFRD. In this paper, a method to calculate the nonlinear dynamic interactions of CFRD compressible reservoir water system in the time-domain is established based on a FEM SBFEM approach. The CFRD is discretized using the finite element method (FEM), and the hydrodynamic pressure of the semi-infinite water on the upstream face of the dam is calculated using the efficient scaled boundary finite element method (SBFEM), in which the degrees of freedom of the hydrodynamic pressure to be solved for are relatively few. The objective of this work is to investigate the effects of reservoir water compressibility and the sediment absorption layer at the reservoir bottom and bank slopes on the dynamic response of a high CFRD reservoir-coupled system under seismic action in various directions. When the reservoir water is considered compressible, partial absorption of the hydrodynamic pressure wave by the sediments can be considered. The results show that water compressibility can significantly affect the stress in the face slabs.

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Gender:Male

Alma Mater:大连理工大学

Degree:Doctoral Degree

School/Department:水利工程系

Discipline:Hydraulic Structure Engineering. Hydraulics and River Dynamics. Fluid Machinery and Engineering

Business Address:大连理工大学建设工程学部水利学院
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