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      KCI등재 SCIE SCOPUS

      Comparative study on damage identification from Iso-Eigen-Value-Change contours and smeared damage model

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      https://www.riss.kr/link?id=A104819419

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      다국어 초록 (Multilingual Abstract)

      The paper proposes two methodologies for damage identification from measured natural frequencies of a contiguously damaged reinforced concrete beam, idealised with distributed damage model. The first method identifies damage from Iso-Eigen-Value-Chang...

      The paper proposes two methodologies for damage identification from measured natural frequencies of a contiguously damaged reinforced concrete beam, idealised with distributed damage model. The first method identifies damage from Iso-Eigen-Value-Change contours, plotted between pairs of different frequencies. The performance of the method is checked for a wide variation of damage positions and extents. The method is also extended to a discrete structure in the form of a five-storied shear building and the simplicity of the method is demonstrated. The second method is through smeared damage model, where the damage is assumed constant for different segments of the beam and the lengths and centres of these segments are the known inputs. First-order perturbation method is used to derive the relevant expressions. Both these methods are based on distributed damage models and have been checked with experimental program on simply supported reinforced concrete beams, subjected to different stages of symmetric and un-symmetric damages. The results of the experiments are encouraging and show that both the methods can be adopted together in a damage identification scenario.

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      참고문헌 (Reference)

      1 N. Lakshmanan, "Wavelet analysis and enhanced damage indicators" 국제구조공학회 3 (3): 23-49, 2007

      2 Palacz, M, "Vibration parameters for damage detection in structures" 249 : 999-1010, 2002

      3 Cerri, M.N, "Use of frequency change for damage identification in reinforced concrete beams" 9 : 475-491, 2005

      4 Liang, R.Y, "Theoretical study of crack induced Eigen frequency changes on beam structures" 118 : 384-396, 1992

      5 Dilena, M, "The use of anti-resonances for crack detection in beams" 276 : 195-214, 2004

      6 Cawley, P, "The location of defects in structures from measurements of natural frequencies" 14 : 49-57, 1979

      7 Dilena, M, "Structural health monitoring of rods based on natural frequency and antiresonant frequency measurements" 8 : 149-173, 2009

      8 Casas, J.R, "Structural damage identification from dynamic-test data" 120 : 2437-2450, 1994

      9 Rajagopalan, N, "Stiffness degradation of reinforced concrete beams under repeated low energy impact loading" 69 (69): 227-234, 1996

      10 N. Lakshmanan, "Seismic damage estimation through measurable dynamic characteristics" 국제구조공학회 4 (4): 167-186, 2007

      1 N. Lakshmanan, "Wavelet analysis and enhanced damage indicators" 국제구조공학회 3 (3): 23-49, 2007

      2 Palacz, M, "Vibration parameters for damage detection in structures" 249 : 999-1010, 2002

      3 Cerri, M.N, "Use of frequency change for damage identification in reinforced concrete beams" 9 : 475-491, 2005

      4 Liang, R.Y, "Theoretical study of crack induced Eigen frequency changes on beam structures" 118 : 384-396, 1992

      5 Dilena, M, "The use of anti-resonances for crack detection in beams" 276 : 195-214, 2004

      6 Cawley, P, "The location of defects in structures from measurements of natural frequencies" 14 : 49-57, 1979

      7 Dilena, M, "Structural health monitoring of rods based on natural frequency and antiresonant frequency measurements" 8 : 149-173, 2009

      8 Casas, J.R, "Structural damage identification from dynamic-test data" 120 : 2437-2450, 1994

      9 Rajagopalan, N, "Stiffness degradation of reinforced concrete beams under repeated low energy impact loading" 69 (69): 227-234, 1996

      10 N. Lakshmanan, "Seismic damage estimation through measurable dynamic characteristics" 국제구조공학회 4 (4): 167-186, 2007

      11 Lakshmanan, N, "Post cracking stiffness and damping in reinforced concrete beam elements" 17 (17): 1405-1411, 1991

      12 Neild, S.A, "Non-linear vibration characteristics of damaged concrete beams" 129 : 26-268, 2003

      13 Ju, F, "Modal frequency method in diagnosis of fracture damage in structures" 1986

      14 Prime, M.B, "Linear and non-linear methods for detecting cracks in beams" 1996

      15 Gladwell,G.M.L, "Inverse Problems in Vibration Second Ed" Kluwer Academic Publishers 2004

      16 N. Lakshmanan, "Identification of reinforced concrete beam-like structures subjected to distributed damage from experimental static measurements" 국제구조공학회 5 (5): 37-60, 2008

      17 Hassiotis,S, "Identification of damage using natural frequencies and Markov parameters" 74 : 365-373, 2000

      18 Morassi,A, "Identification of a crack in a rod based on changes in a pair of natural frequencies" 242 : 577-596, 2001

      19 Silva, J.M.M, "Experimental dynamic analysis of cracked free-free beams" 30 (30): 20-25, 1994

      20 Patil, D.P, "Detection of multiple cracks using frequency measurements" 70 : 1553-1572, 2003

      21 Nandwana, B.P, "Detection of location and size of a crack in stepped cantilever beams based on measurement of natural frequencies" 203 : 435-446, 1997

      22 Cerri, M.N, "Detection of damage in beams subjected to diffused cracking" 234 : 259-276, 2000

      23 Lakshmanan, N, "Detection of contiguous and distributed damage through contours of equal frequency change" 329 : 1310-1331, 2010

      24 N. Lakshmanan, "Damage evaluation through radial basis function network based artificial neural network scheme" 국제구조공학회 4 (4): 99-102, 2008

      25 Morassi,A, "Damage detection and generalized Fourier coefficients" 302 : 229-259, 2007

      26 Rajagopalan, N, "Damage assessment in reinforced concrete beams using natural frequencies" 26 (26): 165-172, 1999

      27 Doebling, S.W, "Damage Identification. Health monitoring of structural and mechanical systems from changes in their vibration characteristics – A literature review" Los Alamos National Laboratory 1996

      28 Yang, X.F, "Crack identification in vibrating beams using the energybased method" 244 (244): 339-357, 2001

      29 Owolabi, G.M, "Crack detection in beams using changes in frequencies and amplitudes of frequency response functions" 265 : 1-22, 2003

      30 Hassiotis, S, "Assessment of structural damage from natural frequency measurements" 49 (49): 679-691, 1993

      31 Gatti, P.L, "Applied Structural and Mechanical Vibrations, Theory, Methods and Measuring Instrumentations" E&F.N Spon 1999

      32 Choudhury, M.R, "A comparison of the modal responses for a defective versus nondefective concrete test beams" 1992

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