Global Thermal Modeling of Lung Heat Transfer with Blood Perfusion
Language
EN
Chapitre d'ouvrage
This item was published in
Proceedings of the International Conference on Fractional Differentiation and its Applications (ICFDA’21). 2022-01p. 231-238
Springer International Publishing
English Abstract
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 ...Read more >
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.Read less <
English Keywords
Heat equation
Bio-heat equation
Blood perfusion
Fractional calculus
Fractional order system
Human lung