Inverse Problems in Engineering Mechanics III

Dulikravich, G.S.; Tanaka, Mana

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Table of contents
  • Contentsix
  • Prefacev
  • Symposium Chairpersonsvii
  • International Scientific Committeevii
  • Organizing Committeeviii
  • Part I: Inverse Thermal Problems1
  • Chapter 1. Simultaneous estimation of thermophysical properties and heat and mass transfer coefficie3
  • Chapter 2. Effects of lateral heat losses on the parameter estimation problem in moist capillary por13
  • Chapter 3. Solution of some inverse heat conduction problems by the dynamic programming filter and B23
  • Chapter 4. The time-to-arrival problem for reconstruction of multidimensional heat flux29
  • Chapter 5. Estimation of the heat flux at the surface of ablating materials39
  • Chapter 6. Estimation of thermal properties of ablating materials49
  • Part II: Boundary Data and Parameters Identification59
  • Chapter 7. Solution to shape optimization problems of continua on thermal elastic deformation61
  • Chapter 8. A 3-D finite element formulation for the determination of unknown boundary conditions in67
  • Chapter 9. Alternating boundary element inversion scheme for solving inverse boundary value problem77
  • Chapter 10. Solution of inverse geometry problems using Bezier splines and sensitivity coefficients87
  • Chapter 11. Identification of boundary conditions by iterative analyses of suitably refined subdomai97
  • Chapter 12. Domain characterization by tomography and material parameter identification for geologic107
  • Chapter 13. Determination of material property of functionally graded cylinder using genetic algorit117
  • Part III: Damage or Defect Detection125
  • Chapter 14. Inversion of vibration mode of an immersion ultrasonic transducer127
  • Chapter 15. Three dimensional shape reconstruction of defects from measured backscattering waveforms137
  • Chapter 16. Modeling of grain pullout in fatigued polycrystalline alumina145
  • Chapter 17. Structural damage identification of frame model based on filtering algorithm153
  • Chapter 18. Crack identification of elastically supported beam by genetic algorithm161
  • Part IV: Inverse Problems in Solid Mechanics167
  • Chapter 19. Parameters identification of an elastic plate subjected to dynamic loading by inverse an169
  • Chapter 20. A parameter identification method using observational boundary conditions and wavelet tr181
  • Chapter 21. Stress distribution within granular body185
  • Chapter 22. Stress distribution determination scheme for elastic plastic material based on equivalen193
  • Chapter 23. An inverse approach for constructing the residual stress caused by welding201
  • Part V: Numerical and Computational Algorithms209
  • Chapter 24. Parameter identification for evolution hemivariational inequalities and applications211
  • Chapter 25. Direct method for solution of inverse boundary value problems of the Laplace equation219
  • Chapter 26. A variational approach for finding the source function of the wave equation227
  • Chapter 27. Ill-posed problems and a priori information235
  • Chapter 28. A parameter estimation problem and its regularization by the conjugate gradient method245
  • Chapter 29. Nonlinear inverse problems of vibrational spectroscopy251
  • Chapter 30. Coefficient identification of the wave equation using the alternating directions method261
  • Part VI: Applications of Computational Algorithms269
  • Chapter 31. Construction of neural network using cluster analysis and Voronoi diagram271
  • Chapter 32. General optimiser for continuous inverse analysis281
  • Chapter 33. Inversion method using spectral decomposition of Green's function291
  • Chapter 34. Application of stress inversion method to develop crustal deformation monitor of Japanes301
  • Chapter 35. Optical multilayer coating synthesis by simultaneous optimization of number of layers, r311
  • Chapter 36. Adaptive parallel genetic clustering in parameter inverse problems315
  • Part VII: Inverse Problems in Aeronautics and Fluid Dynamics325
  • Chapter 37. The application of modified output error method on ALFLEX flight data327
  • Chapter 38. Flight trajectory tracking system applied to inverse control for aerobatic maneuvers337
  • Chapter 39. Stochastic optimization of parameters and control laws of the aircraft gas-turbine engin345
  • Chapter 40. Sensitivity of aerodynamic optimazation to parameterized target functions355
  • Chapter 41. Using the gasdynamic knowledge base for aerodynamic design and optimization in the sonic365
  • Chapter 42. Design of a cascade airfoil shape using the discretized Navier-Stokes equations375
  • Chapter 43. Application of constrained target pressure specification to Takanashi's inverse design m381
  • Part VIII: Inverse Problems in Electromagnetics391
  • Chapter 44. Approximate identification method for material integrity related to electromagnetic nond393
  • Chapter 45. On identification of magnetic sources in materials403
  • Chapter 46. 3D electric impedance prospecting simulation based on the dual reciprocity boundary elem411
  • Author Index419
Book details
  • Vendor Elsevier S & T
  • SKU 9780080439518
  • ISBN-13 9780080535142
  • Author Dulikravich, G.S.; Tanaka, Mana
  • Category Technology & Engineering
  • Subject Materials Science

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Inverse Problems are found in many areas of engineering mechanics and there are many successful applications e.g. in non-destructive testing and characterization of material properties by ultrasonic or X-ray techniques, thermography, etc. Generally speaking, inverse problems are concerned with the determination of the input and the characteristics of a system, given certain aspects of its output. Mathematically, such problems are ill-posed and have to be overcome through development of new computational schemes, regularization techniques, objective functionals, and experimental procedures.

This volume contains a selection of peer-reviewed papers presented at the International Symposium on Inverse Problems in Engineering Mechanics (ISIP2001), held in February of 2001 in Nagano, Japan, where recent development in inverse problems in engineering mechanics and related topics were discussed.

The following general areas in inverse problems in engineering mechanics were the subjects of the ISIP2001: mathematical and computational aspects of inverse problems, parameter or system identification, shape determination, sensitivity analysis, optimization, material property characterization, ultrasonic non-destructive testing, elastodynamic inverse problems, thermal inverse problems, and other engineering applications. These papers can provide a state-of-the-art review of the research on inverse problems in engineering mechanics.