Identification of Defects by the Elastodynamic Boundary Element Method Using Noisy Additional Information

Author:

Tanaka M.,Nakamura M.,Nakano T.,Ishikawa H.

Publisher

Springer Netherlands

Reference16 articles.

1. Tanaka, M., Some Recent Advances in Boundary Element Research for Inverse Problems, Boundary Element X, (Ed. Brebbia, C.A.), Vol. 1, pp. 567–582, CM Publications, Southampton and Boston; Springer-Verlag, Berlin and New York, 1988.

2. Blakemore, M. and Georgiou, G.A. (Eds.), Mathematical Modeling in Non-destructive Testing, Oxford Univ. Press, Oxford and New York, 1988.

3. Proceedings of the JSME Symposium on Computational Methods and Their Applications to Inverse Problems, (in Japanese), No.890-34, 1989.

4. Ohtsu, M., Acoustic Emission Characteristics in Concrete and Diagnostic Applications, Journal of Acoustic Emission, Vol. 6, pp. 99–108, 1987.

5. Kubo, S., Sakagami, T. and Ohji, K., Reconstruction of a Surface Crack by Electric Potential CT Method, Computational Mechanics’88, (Eds. Atluri, S. N. and Yagawa, G.), Proc. Int. Conf. Computational Eng. Sci., Vol. 1, pp.12.i.1–5, Springer-Verlag, Berlin and New York, 1988.

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1. Crack Detection by Elastostatic Measurements;IUTAM Symposium on Discretization Methods in Structural Mechanics;1999

2. Flaw identification in elastomechanics: BEM simulation with local and genetic optimization;Structural Optimization;1998-10

3. An inverse heat conduction algorithm for the thermal detection of arbitrarily shaped cavities;Inverse Problems in Engineering;1995-05

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