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A fully Galerkin method for the recovery of stiffness and damping parameters in Euler-Bernoulli beam models
- Publication Year :
- 1991
- Publisher :
- United States: NASA Center for Aerospace Information (CASI), 1991.
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Abstract
- A fully Sinc-Galerkin method for recovering the spatially varying stiffness and damping parameters in Euler-Bernoulli beam models is presented. The forward problems are discretized with a sinc basis in both the spatial and temporal domains thus yielding an approximate solution which converges exponentially and is valid on the infinite time interval. Hence the method avoids the time-stepping which is characteristic of many of the forward schemes which are used in parameter recovery algorithms. Tikhonov regularization is used to stabilize the resulting inverse problem, and the L-curve method for determining an appropriate value of the regularization parameter is briefly discussed. Numerical examples are given which demonstrate the applicability of the method for both individual and simultaneous recovery of the material parameters.
- Subjects :
- Numerical Analysis
Subjects
Details
- Language :
- English
- Database :
- NASA Technical Reports
- Notes :
- NAS1-18605, , RTOP 505-90-52-01
- Publication Type :
- Report
- Accession number :
- edsnas.19910012483
- Document Type :
- Report