Global Thermal Modeling of Lung Heat Transfer with Blood Perfusion
Langue
EN
Chapitre d'ouvrage
Ce document a été publié dans
Proceedings of the International Conference on Fractional Differentiation and its Applications (ICFDA’21). 2022-01p. 231-238
Springer International Publishing
Résumé en anglais
Thermal models often consider low-frequency approximations and are largely based upon RC circuits. If temperature fluctuations are non-negligible, a more accurate model is needed and is proposed through thermal two-port ...Lire la suite >
Thermal models often consider low-frequency approximations and are largely based upon RC circuits. If temperature fluctuations are non-negligible, a more accurate model is needed and is proposed through thermal two-port network which is direct extension of the heat equation into matrix formalism. As blood flow plays a major role for heat transfers in biological tissue, a second model is obtained from the bio-heat equation. These two type of models are combined into a global thermal modeling of human lung by considering blood perfusion.< Réduire
Mots clés en anglais
Heat equation
Bio-heat equation
Blood perfusion
Fractional calculus
Fractional order system
Human lung
Unités de recherche