tire noise modeling using actran - msc software · pdf filefft & msc software...
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![Page 1: Tire Noise Modeling Using Actran - MSC Software · PDF fileFFT & MSC Software Confidential 1 Tire Noise Modeling Using Actran Actran Features and Examples of Application](https://reader030.vdocuments.net/reader030/viewer/2022013120/5a7a48f57f8b9a05538c2e12/html5/thumbnails/1.jpg)
1 FFT & MSC Software Confidential
Tire Noise Modeling Using Actran Actran Features and Examples of Application
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2 FFT & MSC Software Confidential
• Introduction
• Air pumping: Groove Pattern’s Influence
• Impact & Release Noise
• Tire body sound radiation
– Uncoupled simulation with road absorption
– Coupled simulation with inner cavity
– Installation effect
Content
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3 FFT & MSC Software Confidential
• Tire noise is an important contributor to entire vehicle noise
• Tire noise types
– Impact noise
– Release noise
– Air pumping noise
– Tire vibration sound
• Phenomena analyzed by Actran
– Acoustic transfer function: horn effect of impact noise / release noise, air pumping
resonance
– Road absorption
– Coupled vibro-acoustics: tire inner cavity resonance
– Installation effect
Introduction
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4 FFT & MSC Software Confidential
Air Pumping: Influence of the Groove
Pattern
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5 FFT & MSC Software Confidential
• The air trapped between the tread patterns is brutally compressed and
ejected along the side of the tyre emitting a sound
• The sound is characterised by the acoustic resonance frequencies of the
air channels under the contact patch (organ pipe noise) air pumping
Air pumping - mechanism
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6 FFT & MSC Software Confidential
Mesh the acoustic volume
Geometry 1 Geometry 2
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7 FFT & MSC Software Confidential
Model the sources and the microphones
Symmetric configuration
Asymmetric configuration
microphone
source
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8 FFT & MSC Software Confidential
Actran Results with Different Grooves
Symmetric configuration
Asymmetric configuration
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9 FFT & MSC Software Confidential
Actran Results with Different Grooves – Cont’
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10 FFT & MSC Software Confidential
Impact & Release Noise
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11 FFT & MSC Software Confidential
• Impact Noise: at the leading edge of the contact patch, the shock of the
rubber blocks hitting the road surface
• Release noise: at the trailing edge, tread blocks compressed under the
contact patch are suddenly released and vibrate
• Non-linear mechanical analysis of the rubber block on road can be studied
using Marc
Impact & Release Noise
Impact noise spectrum of a tire
rolling on a drum Impact noise waterfall of tire run-up
on a drum
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12 FFT & MSC Software Confidential
• The transfer function (TF) between an individual source and a receiver can
be calculated independently from the source strength
• Calculation of the amplification factor due to the horn effect made by the
road and a car Tire of 31 cm radius. The road and the Tire are assumed to
be rigid
Propagation of Impact / Release Noise: Horn Effect
l
d
r Acoustic source Microphone
Rigid
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13 FFT & MSC Software Confidential
Horn effect Demo: Acoustic mesh and Actran model
Near acoustic field modeled
by finite element
Far acoustic field modeled
by infinite element
Acoustic source at the
contact point
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14 FFT & MSC Software Confidential
Horn Effect - Results
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15 FFT & MSC Software Confidential
Tire Body Vibration Sound
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16 FFT & MSC Software Confidential
• Smooth HQ6784 Tire of dimensions :
– radius 0.314 m
– width including sidewalls = 0.355 m
• Tire deformation produced by Chalmers University :
– loaded Tire (3000 N)
– rolling on a rigid or absorbing ground at a speed of 80 km/h
– 256 frequencies (from 0 to 2800 Hz with a step of 11 Hz)
Problem Description
7.5 m
1.2 m
7.5 m
1.2 m
Sound Pressure Level
(SPL) at the standard
pass-by noise test
position
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17 FFT & MSC Software Confidential
Uncoupled Model – Without Inner Air
Grid on which dynamic
results are provided Exterior FEM Acoustic mesh
Projection of dynamic results
into the acoustic mesh
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18 FFT & MSC Software Confidential
Effect of Absorbing Ground
• The road is either considered as rigid (perfectly reflecting) or absorbing. In the
latter case the absorption is given, in third-octave band by :
Road absorption defined by :
• admittance on surface of mesh ground
• infinite admittance in infinite ground
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19 FFT & MSC Software Confidential
Effect of Absorbing Ground – Cont’
Pass-by noise test position : rigid and absorbing road
Road absorption must
be taken into account
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20 FFT & MSC Software Confidential
Color Map Resuls
Map results at 124 Hz
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21 FFT & MSC Software Confidential
Comparison with Measurements
Results obtained in the frame of the RATIN project
SPL at the Trailing Edge
Actran Experiment
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22 FFT & MSC Software Confidential
• Restart capability:
– A database of acoustic propagation transfer function depending only on acoustic
mesh, can be calculated and stored before imposing the structure excitation
– For a new structure excitation, the propagation transfer function does not change and
the acoustic response in far field can be calculated with little effort
Restart Capability for Acoustic Radiation
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23 FFT & MSC Software Confidential
Coupled Tire / Inner Air Model
• Inner cavity : FE
• Tire : FE
• Exterior : FE/IE
• Field mesh for far field map
• Allow to take into account the cavity modes and the basics modes of the Tire
• Non-congruent mesh support : the structure and acoustic fluid may be
meshed completely independently
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24 FFT & MSC Software Confidential
Coupled Tire / Inner Air Model – Color Maps
Deformed shape and displacement
amplitude on the Tire
Sound field radiated by the Tire
(near field)
Map Frequency: 242 Hz
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25 FFT & MSC Software Confidential
Coupled Tire / Inner Air Model – Influence of Cavity
First cavity mode at 200 Hz
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• Tire Noise is an important contributor to pass-by noise
• Installation effect should be studied
Pass-by Noise
Engine noise
Tailpipe noise
Tire noise
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27 FFT & MSC Software Confidential
NCT5 Tire radiation including car body : model
Surrounding surface
Volume mesh
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28 FFT & MSC Software Confidential
NCT5 Tire radiation including car body : Results
500 Hz
1000 Hz
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29 FFT & MSC Software Confidential
NCT5 Tire radiation including car body : Results
500 Hz
1000 Hz
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• A flow velocity field can be defined in order to support the solution of the
convected Helmholtz wave equation
• Treatment of flow effects:
– Finite elements: non uniform flow
– Infinite elements: uniform flow
Flow Effects