All Stories

  1. Modelling of thin metal film heating using the dual-phase lag equation with temperature-dependent parameters
  2. Sensitivity analysis of temperature in heated soft tissues with respect to time delays
  3. Dual-phase lag model of heat transfer between blood vessel and biological tissue
  4. Second-Order Dual Phase Lag Equation. Modeling of Melting and Resolidification of Thin Metal Film Subjected to a Laser Pulse
  5. Modeling of laser heating of bi-layered microdomain using the general boundary element method
  6. General Boundary Element Method for the Dual-Phase Lag Equations Describing the Heating of Two-Layered Thin Metal Films
  7. Numerical solutions of the second-order dual-phase-lag equation using the explicit and implicit schemes of the finite difference method
  8. Numerical model of biological tissue heating using the models of bio–heat transfer with delays
  9. Dual-phase lag model of thermal processes in a multi-layered microdomain subjected to a strong laser pulse using the implicit scheme of FDM
  10. Numerical Simulation of Thermal Processes in a Domain of Thin Metal Film Subjected to an Ultrashort Laser Pulse
  11. Identification of Laser Intensity Assuring the Destruction of Target Region of Biological Tissue Using the Gradient Method and Generalized Dual-Phase Lag Equation
  12. Implicit scheme of the finite difference method for the second-order dual phase lag equation
  13. First and second order dual phase lag equation. Numerical solution using the explicit and implicit schemes of the finite difference method
  14. Numerical analysis of laser ablation using the axisymmetric two-temperature model
  15. Soft tissue freezing process. Identification of the dual-phase lag model parameters using the evolutionary algorithm
  16. Modeling of Laser-Soft Tissue Interactions Using the Dual-Phase Lag Equation: Sensitivity Analysis with Respect to Selected Tissue Parameters
  17. Implicit scheme of the finite difference method for 1D dual-phase lag equation
  18. Sensitivity analysis of temperature field in the heated soft tissue with respect to the perturbations of porosity
  19. Numerical model of thermal interactions between cylindrical cryoprobe and biological tissue using the dual-phase lag equation
  20. ANALYSIS OF THERMAL PROCESSES OCCURRING IN THE MICRODOMAIN SUBJECTED TO THE ULTRASHORT LASER PULSE USING THE AXISYMMETRIC TWO-TEMPERATURE MODEL
  21. Dual-phase lag equation. Stability conditions of a numerical algorithm based on the explicit scheme of the finite difference method
  22. Modeling of phase changes in the metal micro-domains subjected to ultrafast laser heating using dual-phase lag equation
  23. Modeling of Melting and Resolidification in Domain of Metal Film Subjected to a Laser Pulse
  24. Estimation of Cast Iron Substitute Thermal Capacity Using the Experimental Data
  25. MODELING OF PHASE CHANGES IN MICRO-DOMAIN INDUCED BY AN ULTRASHORT LASER PULSE
  26. Numerical analysis of the interactions between laser and soft tissues using generalized dual-phase lag equation
  27. Sensitivity Analysis of Temperature Field and Parameter Identification in Burned and Healthy Skin Tissue
  28. Sensitivity Analysis of Temperature Field in Domain of Skin Tissue with Respect to Perturbations of Protective Clothing Parameters
  29. Sensitivity Analysis and Inverse Problems in Microscale Heat Transfer
  30. solidification process
  31. The general boundary element method for 3D dual-phase lag model of bioheat transfer
  32. A numerical analysis of heating tissue using the two-temperature model
  33. BIOINSPIRED IDENTIFICATION OF PARAMETERS IN MICROSCALE HEAT TRANSFER
  34. SENSITIVITY ANALYSIS OF TRANSIENT TEMPERATURE FIELD IN MICRODOMAINS WITH RESPECT TO THE DUAL-PHASE-LAG MODEL PARAMETERS
  35. Numerical Modeling of Melting Process of Thin Metal Films Subjected to the Short Laser Pulse
  36. Parabolic and Hyperbolic Two-Temperature Models of Microscopic Heat Transfer. Comparison of Numerical Solutions
  37. The Design of a System for Assisting Burn and Chronic Wound Diagnosis
  38. Numerical Modelling of Hyperthermia and Hypothermia Processes
  39. Identification of electromagnetic field parameters assuring the cancer destruction during hyperthermia treatment
  40. Application of General Boundary Element Method for Numerical Solution of Bioheat Transfer Equation
  41. Numerical Modeling of Casting Solidification Using Generalized Finite Difference Method
  42. Sensitivity Analysis as a Tool of Optimal Sensors Location for Solidification Parameters Estimation
  43. Identification of tumor region parameters using evolutionary algorithm and multiple reciprocity boundary element method
  44. Identification of cast steel latent heat by means of gradient method
  45. Algorithm of the mould thermal parameters identification in the system casting–mould–environment
  46. Sensitivity analysis of macrosegregation simulation with respect to partition and diffusion coefficients
  47. Sensitivity analysis of solidification process using the boundary element method (the micro-macro approach)
  48. Boundary element model of microsegregation during volumetric solidification of binary alloy
  49. Analysis of thermal processes in solidifying casting using the combined variant of the BEM
  50. Application of the boundary element method for the numerical modelling of the solidification of cylindrical and spherical castings
  51. Numerical model of macro-segregation during directional crystallization process
  52. Modelling of Pe C alloys solidification using the artificial heat source method
  53. The numerical micro/macro model of solidification process
  54. Application of combined BEM-FEM algorithm in numerical modelling of diffusion problems
  55. Numerical analysis of cast iron solidification process
  56. Application of the BEM in the thermal theory of foundry
  57. Numerical simulation of continuous casting solidification by boundary element method
  58. Evolutionary computation in identification of a tumor