Abstract
We propose a nonlinear minimization method of fundamental solutions for the detection (shape, size and location) of unknown inner boundaries corresponding to either a rigid inclusion or a cavity inside a linear elastic body from nondestructive boundary measurements of displacement and traction. The stability of the numerical method is investigated by inverting measurements contaminated with noise. © 2011 WIT Press.
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Karageorghis, A., Lesnic, D., & Marin, L. (2011). The MFS for the detection of inner boundaries in linear elasticity. In WIT Transactions on Modelling and Simulation (Vol. 52, pp. 229–239). https://doi.org/10.2495/BE110201
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