Skip to main navigation
Skip to search
Skip to main content
VTT's Research Information Portal Home
Search content at VTT's Research Information Portal
Home
Profiles
Research output
Projects
Datasets
Research units
Research Infrastructures
Activities
Prizes
Press/Media
Impacts
Simulation of the particle oxidation catalyst POC acoustics
Antti Hynninen
, M. Åbom
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
3
Link opens in a new tab
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Simulation of the particle oxidation catalyst POC acoustics'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
INIS
simulation
100%
oxidation
100%
particles
100%
catalysts
100%
acoustics
100%
devices
42%
filters
42%
particulates
28%
units
28%
ports
28%
solutions
14%
performance
14%
design
14%
substrates
14%
screens
14%
shape
14%
wires
14%
transmission
14%
reduction
14%
losses
14%
noise
14%
attenuation
14%
prediction
14%
internal combustion engines
14%
corrections
14%
pressure drop
14%
diesel engines
14%
sound waves
14%
Engineering
Diesel Particulate Filter
100%
Catalyst Particle
100%
Narrow Channel
100%
Internal Combustion Engine
50%
Acoustic Performance
50%
Flow Resistivity
50%
Kirchhoff
50%
Mesh Screen
50%
Diesel Oxidation Catalyst
50%
Cylindrical Shape
50%
Metallic Wire
50%
Pressure Drop
50%
Diesel Engine
50%
Simulation Mode
50%
Keyphrases
Acoustics
100%
Particle Oxidation Catalyst
100%
Catalyst Particle
100%
Treatment Device
50%
Two-port
33%
Diesel Particulate Filter
33%
Narrow Channel
33%
Simulation Model
16%
Reducer
16%
Exhaust Noise
16%
Internal Combustion Engine
16%
Correction Factor
16%
Acoustic Performance
16%
Diesel Engine
16%
New Alternatives
16%
Flow Resistivity
16%
Conventional Diesel
16%
Cylindrical Shape
16%
Acoustic Resistance
16%
Metallic Wire Meshes
16%
Wire Mesh Screens
16%
Selective Catalysis
16%
Diesel Oxidation Catalyst
16%
Kirchhoff
16%
Transmission Loss
16%
Pressure Drop Measurements
16%
Silencer Designs
16%
Catalyst Substrate
16%
Port Simulation
16%
Acoustic Wave Attenuation
16%