Optimization of engine parameters and emission profiles through bio-additives: Insights from ANFIS Modeling of Diesel Combustion
Cleaner Engineering and Technology,
Journal Year:
2025,
Volume and Issue:
unknown, P. 100994 - 100994
Published: May 1, 2025
Language: Английский
A Study on the Combustion and Emission, Analyzing Oxymethylene Ether (Ome1-5) with Diesel Fuel for Optimal Combustion and Emission Reduction
Published: Jan. 1, 2024
This
study
delves
into
investigating
an
optimized
fuel
blend
consisting
of
oxymethylene
ethers
(OMEn=1-5)
with
diesel.
The
research
employs
a
comparative
analysis
within
constant
volume
combustion
chamber
(CVC)
to
discern
the
performance
this
blended
formulation
against
individual
OMEn=1-5
and
pure
diesel
fuel,
aiming
unravel
crucial
insights
their
dynamics
potential
for
emissions
reduction.In
pursuit
establishing
ideal
autoignition
atmosphere
both
OME
chamber,
meticulous
two-step
process
is
implemented.
executed
numerical
computational
fluid
(CFD)
model,
tailored
replicate
experimental
CVC
geometry
conditions.
Through
rigorous
assessments,
optimal
mass
fractions
pre-combustion
gases
are
determined,
validation
data
ensuring
accuracy
reliability.Subsequently,
comprehensive
optimization
was
conducted,
employing
response
surface
method
(RSM)
regression
modeling
in
tandem
obtained
from
model.
endeavor
aimed
construct
predictive
model
capable
discerning
output
variations
resulting
diverse
compositions,
ultimate
goal
identifying
most
suitable
series
diesel.After
determining
blend,
OMED,
diesel,
ventures
spray
properties
using
optical
setup.
marks
inaugural
exploration
novel
blend's
chamber.
dynamics,
including
injection
duration,
Start
Combustion
(SOC),
End
(EOC),
aims
elucidate
behavior
OMED
blends.
Language: Английский
Optimization Of Furnace Efficiency In High Vacuum Units: Analyzing Heat Absorption And Loss Methods For Enhanced Fuel Utilization
Budi Nugroho,
No information about this author
Al Misqi
No information about this author
Catalyx.,
Journal Year:
2024,
Volume and Issue:
1(2), P. 97 - 112
Published: Oct. 26, 2024
One
of
the
operating
units
PT.
Y,
which
functions
to
separate
fractions
based
on
differences
in
boiling
routes.
Serves
routes
and
under
vacuum
pressure
conditions
High
Vacuum
Unit
(HVU).
This
is
because
feed
this
operation
contains
long
residues
that
consist
hydrocarbon
chain
components
or
have
a
high
point.
leading
equipment
used
unit
furnace.
The
efficiency
furnaces
(HVU)
critical
furnace
paramount
as
it
directly
influences
operational
costs
energy
consumption
separation
process.
study
addresses
problem
optimizing
efficiency,
crucial
for
reducing
fuel
usage,
particularly
gas,
thereby
enhancing
overall
economic
viability
operation.
research
employs
methodology
analyzes
heat
absorbed
loss
within
system.
By
measuring
these
parameters,
identifies
areas
improvement
thermal
efficiency.
Optimization
involves
adjusting
inputs
settings
minimize
waste
while
maintaining
effective
heating
capabilities.
optimization
results
show
significant
decrease
gas
usage
by
2,14%,
compared
average
level
recorded
July
2024.
In
addition,
oil
was
optimized
3
tons
per
day
(T/D).
These
adjustments
improved
furnace's
contributed
more
sustainable
findings
broader
implications
cost
savings
operations.
improving
performance,
Y
can
achieve
lower
reduce
its
environmental
footprint
through
decreased
consumption.
aligns
with
industry
trend
towards
sustainability
efficient
resource
management,
benefiting
company
society.
Language: Английский