Computational fluid and particle dynamics in the human respiratory system

Traditional research methodologies in the human respiratory system have always been challenging due to their invasive nature. Recent advances in medical imaging and computational fluid dynamics (CFD) have accelerated this research. This book compiles and details recent advances in the modelling of t...

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Detalles Bibliográficos
Auteurs principaux: Tu, Jiyuan, professeur, Inthavong, Kiao (Auteur), Ahmadi, Goodarz (Auteur)
Formato: Livre numérique
Idioma:Anglais
Publicado: Dordrecht : Springer Netherlands [20..].
Cham : Springer Nature
Series:Biological and Medical Physics, Biomedical Engineering
Acceso en liña:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Nota: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Computational fluid and particle dynamics in the human respiratory system, Jiyuan Tu, Kiao Inthavong, Goodarz Ahmadi, Dordrecht [etc.], Springer, 2013, 1 vol.(vii-374p.), Biological and medical physics, biomedical engineering, 978-94-007-4487-5
Table des matières:
  • From the Contents: Computational Fluid Particle Dynamics (CFPD) An Introduction: What is CFPD The Human Respiratory System: Introduction Anatomy of the respiratory system.- Reconstruction of the Human Airways: Introduction Medical image acquisition Generation of Computational Mesh for CFPD Simulation: Introduction Mesh types Fundamentals of Fluid Dynamics: Introduction Fluid dynamics and governing equations Fundamentals of Particle Dynamics: Particle dynamics and mathematical models Particle trajectory models Continuum approach Modelling of further particle physics Basic Computational Methods: Introduction Case studies in the human airways: Introduction Modelling inhalation and heat transfer in the nasal cavity Inhalation of toxic particles and the effects of particle morphology Optimisation of nasal drug delivery Advanced Topics and Future Trends: Moving and Deforming Mesh Fluid-Structure Interaction