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The maintenance of an optimal thermal
environment is regarded as a priority
for newborn babies. While healthy
neonates are able to regulate their
body temperature, premature and
small infants may have difficulties
adapting to temperature changes.
For this reason, keeping an optimum
environmental temperature is essential
for their healthy development and
even survival.
This paper reviews some of our
recent applications of Computational
Fluid Dynamics (CFD) to model heat
and mass transfer processes in neonatology,
and investigates the most relevant
heat and mass transfer mechanisms
taking place in medical devices
such as incubators, open cots and
oxygen hoods. The numerical simulations
are validated through comparison
tests with experimental results
and measurements from the medical
literature. It is shown that CFD
simulations are very flexible tools
that can take into account all modes
of heat transfer in assisting neonatal
care and the improved design of
associated medical devices.
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