Computational simulation of temperature and velocity distribution in human upper respiratory airway during inhalation of hot air
V Goodarzi-Ardakani, M Taeibi-Rahni… - Respiratory physiology …, 2016 - Elsevier
The present study provides an accurate simulation of velocity and temperature distributions
of inhalation thermal injury in a human upper airway, including vestibule, nasal cavity,
paranasal sinuses, nasopharynx, oropharynx, larynx, and upper part of main bronchus. To
this end, a series of CT scan images, taken from an adult woman, was used to construct a
three dimensional model. The airway walls temperature was adjusted according to existing
in vivo temperature measurements. Also, in order to cover all breathing activities, five …
of inhalation thermal injury in a human upper airway, including vestibule, nasal cavity,
paranasal sinuses, nasopharynx, oropharynx, larynx, and upper part of main bronchus. To
this end, a series of CT scan images, taken from an adult woman, was used to construct a
three dimensional model. The airway walls temperature was adjusted according to existing
in vivo temperature measurements. Also, in order to cover all breathing activities, five …
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