Title: ISVR Dynamics Group
1ISVR Dynamics Group
- Dr Chris Jones, ISVR
- Dr David Rhodes of Pandrol
2The group
- David Thompson Professor
- Chris Jones Reader
- Researchers
- Briony Croft Rail-head roughness growth (Corus)
- Jungsoo Ryue High frequency vibration propagation
(BB) - David Herron Noise from bridges (Pandrol)
- Nazirah Ahmad Improvement of a rail damper
(TARRC) - Zhenyu Huang Squeal noise modelling (RRUK)
- just starting
- Nuthnapa Triepaischajonsak (Tik)
- Ground vibration mitigation (SNCF, DB, SBB)
- Rebecca Broadbent Impact/rolling noise
3Major project history
- David Thompson joined ISVR in 96 from TNO
- Chris Jones joined ISVR in 97 from BR Research
- EU 4th Framework Silent Freight (96 99)
Silent Track (97 00) - EPSRC Ground vibration project (01 03)
- EU 5th Framework STAIRRS project
- EPSRC project on nonlinear mechanism of rolling
noise generation (02 05) - EU 6th Framework SILENCE (05 ..)
- EU 6th Framework INNOTRACK (06 ..)
- EPSRC project of wavenumber FE/BE methods with
applications to railway noise - NOEMIE project (development of noise TSIs) and
CEN standards for rail roughness and track decay
rates
4Modus operandi three examples for today
- Develop advanced models
- Rolling noise (TWINS)
- Generalised wavenumber FE/BE (WANDS)
- Bridge Noise (Norbert)
- Ground vibration (waFEBE)
- Apply, improve with industrial collaborators
- rail damping (Corus)
- aluminium extrusions (Bombardier)
- bridge noise (Pandrol)
- .. collaborative project on ground vibration ?
- Consultancy
5Experimental Facilities
- 36m track and bogie
- 1/5th scale rolling rig
6Rolling noiseTrack-Wheel Interaction Noise
Software
7Track and vehicle noise
8Rail damper (Corus)
9Rail damping
Measured (total sound pressures)
Predicted sound power (track only)
120
100
Sound
Sound power
pressure
level
90
110
level,
-
12
dB re 10
W
m
dB re 20
Pa
100
80
70
90
60
80
50
70
63
125
250
500
1k
2k
4k
63
125
250
500
1k
2k
4k
Frequency Hz
Frequency Hz
112.3 dB(A)
90.5 dB(A)
undamped
reference track
106.9 dB(A)
85.1 dB(A)
with absorbers
with absorber
10Implemented
Netherlands, France, Sweden, Germany
- Projects for
- improvement of elastomer
- reduced rail roughness benefit
11Aluminium extrusions (Bombardier)
- Long uniform extruded panels
12Waveguide FE and Wavedomain BE method
- Extrusions have constant geometry along x
direction - Structure model by Waveguide Finite Element
(WFE) - Fluid Wavedomain Boundary Element (WBE)
Very efficient calculations vs ordinary 3D models
13Measurements of transmission of noise
14Transmission loss
Experiment 1.5 m, calculation infinite
15Detailed analysis
Mode shape at cut-on frequency 430 Hz
Mode shape at cut-on frequency 2600 Hz
16Scanning laser velocimeter measurements
Mechanical excitation, reverberation room side
791Hz
17EngD project
- Rail fasteners and bridge noise
- student David Herron
- EngD is 4 years and differs from a PhD project
- Southampton EPSRC centre for EngD in Transport
Engineering - industrial partner Pandrol Ltd
- to investigate the use of special track
components for reducing noise and vibration on
bridges
18Norbert bridge noise modelling scheme
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20Bridge Model NORBERT
- Bridge modelled as assemblage of 2400 plates
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