ZAMM ‐ Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik,
Journal Year:
2024,
Volume and Issue:
104(12)
Published: Oct. 29, 2024
Abstract
The
complex
heat
transfer
processes
occurring
in
a
magnetized
water‐based
hybrid
nanofluid
flowing
past
stretching
or
shrinking
wedge
are
investigated
this
work.
research
highlights
the
significant
influence
of
angle
on
fluid
flow
patterns
and
temperature
gradients,
emphasizing
how
larger
angles
cause
changes
pressure,
separation,
profiles.
Additionally,
study
emphasizes
importance
radiation
effects
near
surfaces,
where
increased
often
leads
to
cooling
due
thermal
energy
emission.
findings
have
implications
industries
such
as
aerospace,
electronics,
management,
groundwater
resources
management
precise
control
is
critical
for
safe
efficient
operations.
numerical
method
applied
solve
governing
equations
fourth‐order
Runge–Kutta
technique
with
shooting
technique.
This
efficiently
solves
boundary
value
problem
by
converting
it
into
system
first‐order
initial
problems.
Then
used
system,
starting
an
adequate
guess.
study's
results
presented
tabular
graphical
forms,
providing
valuable
insights
dynamics
behavior
given
setting,
enabling
more
informed
decision‐making
optimization
relevant
engineering
applications.
Increased
frequently
effect
owing
output.
Heat
sinks/heat
sources
crucial
regulation
effective
lowering
temperatures
via
processes.
We
also
emphasize
impacts
values
skin
friction
Nusselt
number
various
parameters
cases
provide
transmission
frictional
properties
under
examination.
These
quantitative
contribute
better
understanding
significance
findings.
Alexandria Engineering Journal,
Journal Year:
2024,
Volume and Issue:
93, P. 22 - 32
Published: March 13, 2024
Due
to
the
outstanding
thermal
properties
of
nanoparticles,
scientists
have
introduced
a
range
multidisciplinary
applications
in
fields
such
as
heat
transfer
systems,
management,
solar
energy,
chemical
processes,
manufacturing,
and
cooling
technologies.
The
aim
current
paper
is
inspect
mass
pattern
during
Maxwell
nanofluid
flow
considering
diffusion
phenomenon.
suspension
microorganisms
has
been
considered
for
bioconvective
flow.
inspection
analyzed
by
adopting
nonlinear
radiated
effects.
motivations
fluid
are
associated
novel
relaxation
time
features
occurring
polymer
industry
manufacturing
systems.
endorsed
caused
periodically
oscillating
surface
with
porous
medium.
whole
mathematical
model
developed
terms
partial
differential
equations
(PDE's).
A
successful
analytical
solution
presented
via
homotopy
analysis
method
(HAM).
It
observed
that
solutal
concentration
reduces
due
modified
Duffer
Lewis
number
Deborah
number.
heating
parameter
magneto-porosity
constant
enhances
temperature
profile.
predicted
results
convey
significant
impact
enhancing
energy
reservoirs,
applications,
nuclear
oil
industry,
storage
space
exploration
etc.
Case Studies in Thermal Engineering,
Journal Year:
2024,
Volume and Issue:
61, P. 104821 - 104821
Published: July 18, 2024
The
Maxwell
model
of
fluid
flow
in
a
rotating
frame
over
porous
media
is
investigated
this
paper.
Binary
chemical
reactions
and
movement
under
activation
energy
are
both
covered
study.
impact
mass
heat
transmission
along
the
boundary
layer
an
equilibrium
process.
Using
method
similarity
transformation,
controlling
partial
differential
equations
changed
into
ordinary
equations.
results
confirmed
using
bvp4c
Matlab
built-in
programme,
altered
resolved
utilizing
4th
order
Runge
Kutta
based
shooting
method.
Reversible
irreversible
processes,
energy,
reactions,
Deborah
numbers,
rotation
parameters
some
for
which
offered
tables
graphs.
prior
objective
study
to
examine
on
setting.
concentration
reversible
flows
significantly
finer
than
that
with
influence
reaction,
factors.
A
reduced
thickness
can
improve
rates
tremendous
applications,
such
as
exchangers
reactors.
In
process,
sulphuric
acid
utilized
catalyst
affects
reaction
rate
selectivity.
This
crucial
efficient
catalytic
process
design.
Controlling
elasticity
kinetics
useful
operations
need
accurate
product
production.
Nanotechnology Reviews,
Journal Year:
2025,
Volume and Issue:
14(1)
Published: Jan. 1, 2025
Abstract
Oil
extraction,
renewable
energy,
and
biological
heat
transfer
are
the
major
applications
of
radiative
Carreau
nanofluid
flow
in
existence
microorganisms
moving
around
a
permeable
wedge.
This
work
examines
time-dependent
flowing
two-phase
containing
gyrostatic
motile
bacteria
via
oblique
wedge
source
(sink)
thermal
radiation.
Magnetoelectric
effect
yield
stress
on
motion
considered,
as
is
most
suitable
for
representing
different
types
physics
problems
because
it
can
disclose
rheology
liquids
with
short-chain
suspension
molecules
fluid
crystals
its
many
uses
detergents
blood
mixing,
medical
operations.
Appropriate
similarity
conversions
used
to
produce
equations
characterizing
system
nondimensional
mathematical
model,
which
subsequently
resolved
computationally
using
Runge-Kutta
methodology
based
shooting
approach.
Attendance
boosts
surface
frictional
force,
upsurges
rates
mass
transfers
nanofluid,
maintains
density
significantly.
also
diminishes
increases
beneficial
uses.
Yield
greatest
way
increase
this
industrial
cooling.
action
maintain
microbe
density,
making
valuable
medicinal
procedures
useful
bacteria.