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Quantitative approach for damage detection of reinforced concrete frames 被引量:1

Quantitative approach for damage detection of reinforced concrete frames
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摘要 The objective of this paper is to provide an analytical basis for the quantitative evaluation of damage to a reinforced concrete structure based on the vibration data obtained by using the damage detection technique. A partial reinforced concrete system of a weak beam/strong column moment frame is chosen as an example. A pushover analysis is carried out in order to numerically examine both the story shear-relative displacement characteristics and the associated damage level. In the analysis, a two dimensional nonlinear finite element analysis is employed considering several constitutive models. As a result, the degradation of the stiffness at the damaged story is characterized in association with the story relative displacement. It is also pointed out that the rotation angle of the column-base is highly correlated with the story relative displacement. Based on the analytical findings, quantitative approaches for a structural health monitoring system are suggested considering both the current sensor technologies and those available in the future. Keywords nonlinear FEM analysis - structural health monitoring - reinforced concrete structure - story stiffness - rotation angle of column-base Supported by: Ministry of Education, Science, Sports and Culture, Grant-in-Aid for Scientific Research (Base Research (c) (1), Research No. 14550555) The objective of this paper is to provide an analytical basis for the quantitative evaluation of damage to a reinforced concrete structure based on the vibration data obtained by using the damage detection technique. A partial reinforced concrete system of a weak beam/strong column moment frame is chosen as an example. A pushover analysis is carried out in order to numerically examine both the story shear-relative displacement characteristics and the associated damage level. In the analysis, a two dimensional nonlinear finite element analysis is employed considering several constitutive models. As a result, the degradation of the stiffness at the damaged story is characterized in association with the story relative displacement. It is also pointed out that the rotation angle of the column-base is highly correlated with the story relative displacement. Based on the analytical findings, quantitative approaches for a structural health monitoring system are suggested considering both the current sensor technologies and those available in the future. Keywords nonlinear FEM analysis - structural health monitoring - reinforced concrete structure - story stiffness - rotation angle of column-base Supported by: Ministry of Education, Science, Sports and Culture, Grant-in-Aid for Scientific Research (Base Research (c) (1), Research No. 14550555)
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2003年第1期147-158,共12页 地震工程与工程振动(英文刊)
基金 Ministry of Education,Science,Sports and Culture,Grant-in-Aid for Scientific Research(Base Research(c)(1),Research No.14550555)
关键词 nonlinear FEM analysis structural health monitoring reinforced concrete structure story stiffness rotation angle of column-base nonlinear FEM analysis structural health monitoring reinforced concrete structure story stiffness rotation angle of column-base
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参考文献11

  • 1Zdeněk P. Ba?ant,B. H. Oh.Crack band theory for fracture of concrete[J].Matériaux et Constructions.1983(3)
  • 2.
  • 3Liu SC."Natural Hazard Mitigation:Exploring the Technological Frontiers,"[].ProcSecond International Workshop on Structural Health Monitoring.1999
  • 4van Mier JGM."Muhiaxial Strain-softening of Concrete.Part Ⅰ:Fracture,"[].Materials and Structures.1986
  • 5Mira A,Takahira S."Peak Strain and Displacement Sensors for Structural Health Monitoring,"[].ProcThird International Workshop on Structural Health Monitoring.2001
  • 6Park R,Milburn JR."Comparison of Recent New Zealand and United States Seismic Design Provisions for Reinforced Concrete Beam-Column Joints and Test Results from Four Units Designed According to The New Zealand Code,"[].Bulletin of The New Zealand National Society for Earthquake Engineering.1983
  • 7Westermo BD,Thompson L."Smart Structural Monitoring:A New Technology,"[].IntJournal of Sensors.1994
  • 8De Borst R."Non-linear Analysis of Frictional Materials,"[]..1986
  • 9Cervenka Consulting."ATENA Computer Program for Nonlinear Finite Element Analysis of Reinforced Concrete Structures,"[].ProgramDocumentation.2000
  • 10Chen WF,Saleeh AF.Constitutive Equations for Engineering Materials[]..1982

同被引文献4

  • 1W. B. Kr?tzig,Y. S. Petryna.Assessment of structural damage and failure[J].Archive of Applied Mechanics.2001(1)
  • 2K. Saleh,F. P. Hassani,P. Guevremont,A. Sadri,R. Lapointe,G. Ballivy,J. Rhazi,Y. Kharrat.Three Seismic Nondestructive Methods Used to Monitor Concrete Slab Injection Tests[J].Pure and Applied Geophysics (-).1997(3-4)
  • 3F. P. Hassani,A. Sadri,M. Momayez.A Miniature Seismic Reflection System for Evaluation of Concrete Linings[J].Pure and Applied Geophysics (-).1997(3-4)
  • 4陈仲裕,梁玉进,Farhad Ansari.Remote structural health monitoring with serially multiplexed fiber optic acoustic emission sensors[J].Earthquake Engineering and Engineering Vibration,2003,2(1):141-146. 被引量:2

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