Numerical solution of 3D unsteady nonlinear inverse problem of estimating surface heat flux for cylindrical geometry
A numerical algorithm is proposed for solving a three-dimensional unsteady nonlinear inverse heat conduction problem of estimating the boundary conditions at the heated surface of a solid. In this study, the geometrical form of the solid is a finite hollow half-cylinder. As additional information, n...
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Published in | Inverse problems in science and engineering Vol. 14; no. 1; pp. 39 - 52 |
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Format | Journal Article |
Language | English |
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01.01.2006
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Abstract | A numerical algorithm is proposed for solving a three-dimensional unsteady nonlinear inverse heat conduction problem of estimating the boundary conditions at the heated surface of a solid. In this study, the geometrical form of the solid is a finite hollow half-cylinder. As additional information, needed to solve the inverse problem under study, we use both temperature measurements at the internal surface (case of the use of thermo-couples or an infrared camera) inside the half-cylinder (case of the use of thermo-couples) and those at the heated surface (case of the use of an infrared camera). The iterative regularization method is used to build the numerical algorithm. The method is based on the residual functional minimization by using the unconstrained conjugate gradient method with the regularizing discrepancy principle as a stopping criterion of the iterative processes. The unknown function of three variables is sought for as a grid function. |
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AbstractList | A numerical algorithm is proposed for solving a three-dimensional unsteady nonlinear inverse heat conduction problem of estimating the boundary conditions at the heated surface of a solid. In this study, the geometrical form of the solid is a finite hollow half-cylinder. As additional information, needed to solve the inverse problem under study, we use both temperature measurements at the internal surface (case of the use of thermo-couples or an infrared camera) inside the half-cylinder (case of the use of thermo-couples) and those at the heated surface (case of the use of an infrared camera). The iterative regularization method is used to build the numerical algorithm. The method is based on the residual functional minimization by using the unconstrained conjugate gradient method with the regularizing discrepancy principle as a stopping criterion of the iterative processes. The unknown function of three variables is sought for as a grid function. |
Author | Loulou, Tahar Artioukhine, Eugene |
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CitedBy_id | crossref_primary_10_1016_j_ijheatmasstransfer_2008_10_031 crossref_primary_10_1080_17415977_2012_713950 crossref_primary_10_1016_j_ijthermalsci_2013_07_010 crossref_primary_10_1016_j_ijheatmasstransfer_2008_11_002 crossref_primary_10_1016_j_ijsolstr_2013_06_005 crossref_primary_10_1080_17415971003587768 crossref_primary_10_1016_j_ijthermalsci_2019_06_001 crossref_primary_10_1108_09615531111135783 |
Cites_doi | 10.1115/1.2910490 10.1115/1.2825980 10.2514/3.141 10.1080/104077900275549 10.1080/174159799088027701 10.2514/2.6374 10.1007/978-3-642-76436-3 10.1016/S0017-9310(99)00020-4 10.1002/aic.690070305 10.1007/s00231-002-0297-8 10.1016/S0017-9310(99)00330-0 10.2514/2.6554 10.1007/BF00872080 10.1115/1.2824098 10.1080/104077800274109 10.1201/9781482234213 |
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References | Ozişsik MN (bib4) 1999 Hensel E (bib3) 1991 bib14 Carnahan B (bib20) 1990 bib12 bib23 bib13 bib10 bib21 bib11 bib22 Beck JV (bib2) 1985 bib9 Polak E (bib16) 1971 bib7 bib8 bib5 bib18 bib6 bib19 bib1 Tikhonov AN (bib17) 1997 Alifanov OM (bib15) 1995 |
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SubjectTerms | 3D unsteady nonlinear inverse problem Cylindrical geometry Iterative regularization method |
Title | Numerical solution of 3D unsteady nonlinear inverse problem of estimating surface heat flux for cylindrical geometry |
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