
Nanotechnology Reviews, Год журнала: 2024, Номер 13(1)
Опубликована: Янв. 1, 2024
Abstract
This
work
focuses
on
the
time-variant
convective
thin-film
nanoliquid
fluid
flow
and
heat
transfer
over
a
stretching,
inclined
surface
under
effect
of
magnetism
for
different
energy
technologies
sustainability.
It
is
crucial
to
understand
how
solid
materials
can
be
treated
with
thin
films
while
focusing
actual
ability
improve
body
features
infiltration,
shock
resistance,
rigidness,
brightness,
dispersal,
absorption,
or
electrical
efficiency.
All
these
improvements
are
invaluable,
especially
in
field
nanotechnology.
As
any
mass
thermal
transport
phenomena,
study
breaks
down
important
factors
such
as
thermophoresis
Brownian
movement,
an
attempt
energetic
balance
lessen
fuel
consumption.
Utilizing
mathematical
model
temporal
evolution
liquid
film
characteristics
surface,
we
obtain
system
nonlinear
partial
differential
equations
convert
it
coupled
ordinary
appropriately.
Finally,
results
problem
computational
analysis
produced
using
Laplace
Adomian
decomposition
method
(LADM)
shown
both
quantitatively
visually.
During
analysis,
impact
specific
parameters
magnetic,
Brownian,
examined
found
highly
significant.
Furthermore,
that
effects
(
Язык: Английский