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Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/403

Title: Genetic algorithm based damage Identification in Non-homogenous Structural Members, Challenges and applications of mathematical Modeling techniques in Building science and Technology
Authors: Panigrahi, S K
Chakraverty, S
Mishra, B K
Keywords: Damage factor
Non-homogeneous material
Genetic algorithm
Residual force
Eigen value
Beam
2008
Genetic algorithm
Non-homogenous structural
Issue Date: 29-Sep-2011
Abstract: Non-homogeneous structural members such as beams are very important in various engineering applications and for experimental analysis purposes. A minor damage on any part of the structure reduces the strength of the structure and leads to a major failure. So, the identification of damage is very important and essential at an early stage. In this paper, a new formulation of an objective function for the genetic search optimization procedure along with the residual force method is presented for the identification of macroscopic structural damage in a non-homogeneous beam. The developed model requires experimentally determined data as input and detects the location and extent of the damage in the beam. Here, numerically simulated data using finite element models of structures are used to identify the damage at a reasonable level of accuracy. Damage parameters given theoretically are compared by the present procedure and are found to be in good agreement
URI: http://hdl.handle.net/123456789/403
Appears in Collections:Published Articles

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