A fast forward scheme for numerical simulation of NDT signals of DC potential drop method

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Abstract

In this paper, a fast forward solver based on Finite Element Method (FEM) and databases of unflawed field information is newly developed for the rapid computation of Direct Current Potential Drop (DCPD) signals for Nondestructive Testing (NDT) of Metallic Foam to reduce the computer resources necessary for this 3D FEM analysis. Through comparing numerical results of present method with those of a full FEM code, it is demonstrated that the proposed fast scheme can significantly decrease the computer resources but with same accuracy.

Original languageEnglish
Title of host publicationElectromagnetic Nondestructive Evaluation (XII)
EditorsYoung-Kil Shin, Hyang-Beom Lee, Sung-Jin Song
Pages196-203
Number of pages8
DOIs
StatePublished - 2009

Publication series

NameStudies in Applied Electromagnetics and Mechanics
Volume32
ISSN (Print)1383-7281
ISSN (Electronic)1879-8322

Keywords

  • DC Potential Drop
  • Fast Forward Solver
  • FEM
  • Metal Foam

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