Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input Models

Dynamic dam-foundation interaction is great important in the design and safety assessment of the dam structures. Two classic boundary conditions, i.e., the viscous-spring boundary and the viscous boundary, are employed to consider the radiation damping of the unbounded rock foundation. The input mod...

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Main Authors: Denghong Chen, Chunping Hou, Feng Wang
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/6660145
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spelling doaj-0c6e8d15b3d24444b298446d7b2160942021-03-15T00:00:26ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/6660145Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input ModelsDenghong Chen0Chunping Hou1Feng Wang2State Key Laboratory of Simulation and Regulation of Water Cycle in River BasinCollege of Civil Engineering & ArchitectureCollege of Hydraulic & Environmental EngineeringDynamic dam-foundation interaction is great important in the design and safety assessment of the dam structures. Two classic boundary conditions, i.e., the viscous-spring boundary and the viscous boundary, are employed to consider the radiation damping of the unbounded rock foundation. The input models of seismic excitation of the viscous-spring boundary and the viscous boundary are derived. The accuracy of the two boundary conditions in the dynamic analysis of the dam foundation is verified through the foundation analysis using an impulsive load. The influences of two boundary conditions and their earthquake input models on the seismic analysis of the Pine Flat and Jin’anqiao gravity dam-foundation-reservoir systems are then investigated. The results of displacements, hydrodynamic pressure, and principal stresses show that the agreement between the results of the viscous-spring boundary and viscous boundary is good. The relative errors of the two models in the Pine Flat and Jin’anqiao gravity dams are both less than 5%. They are both acceptable from an engineering point of view.http://dx.doi.org/10.1155/2021/6660145
collection DOAJ
language English
format Article
sources DOAJ
author Denghong Chen
Chunping Hou
Feng Wang
spellingShingle Denghong Chen
Chunping Hou
Feng Wang
Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input Models
Shock and Vibration
author_facet Denghong Chen
Chunping Hou
Feng Wang
author_sort Denghong Chen
title Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input Models
title_short Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input Models
title_full Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input Models
title_fullStr Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input Models
title_full_unstemmed Influences on the Seismic Response of the Gravity Dam-Foundation-Reservoir System with Different Boundary and Input Models
title_sort influences on the seismic response of the gravity dam-foundation-reservoir system with different boundary and input models
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description Dynamic dam-foundation interaction is great important in the design and safety assessment of the dam structures. Two classic boundary conditions, i.e., the viscous-spring boundary and the viscous boundary, are employed to consider the radiation damping of the unbounded rock foundation. The input models of seismic excitation of the viscous-spring boundary and the viscous boundary are derived. The accuracy of the two boundary conditions in the dynamic analysis of the dam foundation is verified through the foundation analysis using an impulsive load. The influences of two boundary conditions and their earthquake input models on the seismic analysis of the Pine Flat and Jin’anqiao gravity dam-foundation-reservoir systems are then investigated. The results of displacements, hydrodynamic pressure, and principal stresses show that the agreement between the results of the viscous-spring boundary and viscous boundary is good. The relative errors of the two models in the Pine Flat and Jin’anqiao gravity dams are both less than 5%. They are both acceptable from an engineering point of view.
url http://dx.doi.org/10.1155/2021/6660145
work_keys_str_mv AT denghongchen influencesontheseismicresponseofthegravitydamfoundationreservoirsystemwithdifferentboundaryandinputmodels
AT chunpinghou influencesontheseismicresponseofthegravitydamfoundationreservoirsystemwithdifferentboundaryandinputmodels
AT fengwang influencesontheseismicresponseofthegravitydamfoundationreservoirsystemwithdifferentboundaryandinputmodels
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