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New Phenomena in Vortex-Induced Vibrations C.H.K. Williamson Fluid Dynamics Research Laboratories Cornell University Supported by the Office of Naval Research

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Page 1: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

New Phenomena in Vortex-Induced Vibrations

C.H.K. Williamson

Fluid Dynamics Research LaboratoriesCornell University

Supported by the Office of Naval Research

Page 2: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Large vibrations of:

• Riser tubes bringing oil from the seabed

• Bridges and chimney stacks

• Heat exchangers

• Overhead power cables

• Many other applications

Hoover Diana ProjectExxon-Mobil

Tacoma Narrows Bridge

Motivation

Page 3: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Y-CYLINDER XY-CYLINDER

PIVOTED ROD FLEXIBLE CYLINDER

STRUMMING CABLE TETHERED SPHERE

UU

x

y

U

or

Generic -Universal Nature of Diverse VIV Systems

Paradigm for more complex systems

High Re All VIV Systems

• MIT, Norway, Exxon

GENERIC PHENOMENACarry across to:

Page 4: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Does Resonance Look Anything Like This?

fV ≈ fN

fN fV

U

Page 5: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

• Flow speed U →

Expect resonant oscillation

• Oscillating mass m →

Air → m* is large ~ O(100)

Water → m* is small ~ 1-10

• Structural damping c →

m*ζ = mass-damping parameter

DfUUN

=*

mass fluid displacedmm =*

damping criticalc

NV ff ≈

5~1*SDf

UDf

UUVN

===NORMALIZED VELOCITY

MASS RATIO

DAMPING RATIO

VERY LOW VALUESHERE !

Parameters in the problem

Page 6: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Typical VIV System

Equation of Motion:

fluidFkyycym =++

tAty ωsin)( =

( )φω += tFtF sin)( 0

Cylinder displacement:

Fluid force:φ IS VERY IMPORTANT !

⎥⎥⎦

⎢⎢⎣

⎡⎟⎠

⎞⎜⎝

⎛+

== *2

*

*

3*

4sin

)1 f

fUC

C(mDAA Y

A* π

φζ

f *= ffN

=(m* +1)

(m* +CEA )φ

πcos

21

2

*

*

*3 YEA Cf

UA

C ⎟⎠

⎞⎜⎝

⎛=

Amplitude response

Frequency response

MASS-DAMPING PARAMETER

DEPENDS ON m*

Page 7: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

VIV Response

Modes

1

Page 8: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

What is known about the wake vortex dynamics for a transversely oscillating cylinder

Williamson & Roshko (1988)

Example vortex wake modes

‘2S’ MODE2 single vortices / cycle

‘2P’ MODE2 pairs of vortices / cycle

2P – Ongoren & Rockwell (1988)for in-line oscillations

Page 9: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Map of Wake Modes

Williamson & Roshko (1988)

Page 10: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

High Mass-Damping

‘2S’ Mode ‘2P’ Mode

2 Modes

1 Discontinuity

Experiments in AIRm* ~ 100-200

Feng (1968) Brika & Laneville (1993)

Page 11: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Low Mass-Damping

• Large A*

• Wide regime of resonance

f* > 1.0 !!Depart from classical resonance

3 Modes

2 Discontinuities

Experiments in WATERm* ~ 5

Khalak & Williamson (1996, 1999)

Page 12: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Very Low m*

Very Wide Regime !

5Collapses beautifully with:

ffS

fU vo=⎟

⎞⎜⎝

⎛*

*

Ratio of the2 most basicfrequencies

Suggests W-R Map:

Initial → 2SUpper → 2PLower → 2P

Now see VORTEX MODES !

Page 13: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Vortex Modes

Initial Branch

‘2S’

Lower Branch

‘2P’

Seen effects:m*ζ, m*

See extreme later

Page 14: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Numerical Simulations & Laminar

VIV

2

Page 15: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Compilation of Low-Re Results

A*peak < 0.6

Vortex mode changes to

P+S

A* > 0.6

Hysteresis

Con

sist

ent w

ith

P+S mode must not be able to impart positive energy transfer

i.e. Cy sin φ < 0Ponta and Aref (2003)Meneghini & Bearman (1995)

Experiment

Numerical simulation

Anagnostopolous & Bearman (1992)Anagnostopolous (1994)Newman & Karniadakis (1997)Shiels, Leonard, & Roshko (2001)Wilden & Graham (2000)

Page 16: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

VIV Simulations

Experiment 3D DNS

Challenges for CFD:

• Must use 3D simulations to produce:• ‘2P’ mode• A* > 0.6

• Pushing up Re:• 1995 Remax ~ 200 (Newman & Karniadakis)• 1999 Remax ~ 2000 (Evangelinos & Karniadakis)• 2005 Remax ~ 3000 - 10,000 ? (Lucor & Karniadakis………)

• LES: • Not yet good agreement with experiments or between LES studies.

Govardhan & Williamson (2000) Blackburn et. al. (2001) Lucor & Karniadakis (2005)

Page 17: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

3Pivoted

XY Motion & Complex Flows

TetheredTapered

Flexible

Page 18: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

X-Y Motion

m* < 6

A* = 1.5 !

Slight streamwise motion has dramatic effect !

NOTE: Forced motion of Jeon & Gharib (2004)

Small change in φ due to vortex dynamics

Big change in A*

Jauvtis & Williamson JFM (2004)

Much bigger

than Y-only

Page 19: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Spanwise Variation of A*

Williamson-Roshko Map:

Suggests you can get 2S along part of span, 2P along other part of span

Relevant to Cable Dynamics

2S-2P Hybrid Mode

Techet, Hover, &

Triantafyllou (1998)

“Gumby”

Page 20: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Pivoted Cylinder

Cross over of branches

Need 3D W-R Map

Biggest amplitude mode

2C Mode

Simplest case of spanwise amplitude variation

relevant to cable dynamics

2S-2P Hybrid

2C

U

Flemming & Williamson (2004)

Page 21: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Sphere wake

Sphere VIV

Streamwise vorticity

Lift force

Analogy to airplane trailing vortices

Lift force

Aircraft trailing vortex wake

Govardhan & Williamson (2005)

Page 22: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Griffin Plot4

Perhaps the most basic question !

→ What is A*peak

Page 23: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

First extensive compilations of many studiesGriffin, et. al. (1975)

log-log

Skop-Griffin parameter

(m*ζ • S2)

Classical Griffin Plot

Page 24: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

All Cases:

• Y – cylinders

• Pivoted bodies

• Flexible Cantilever

• ……… + others

BigScatter !

linear-log

Page 25: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Slightly Better Collapse

Cylinder y-motion

only

A*PEAK NOT SATURATED !

After 30 Years …

The Griffin Plot is not yet fully defined !

Even for the paradigm case !

Page 26: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Controlled Damping

Damping Control Works !

Page 27: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Effect of Re

Note: curves look similar for each Re

Page 28: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Effect of Re

Good collapse of data:

]Re41.0[log 36.0100

* ==αA

ALSO:

Klamo, Leonard, & Roshko(2005)

Independently find trend of amplitude increase with Re

(controlled damping)

Page 29: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

The “Modified Griffin Plot”

*0

**

=

=αAAAMODIFIED

Collapses our data well !

We define:

*0

*

=αAA

Page 30: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Can we now collapse

the large scatter in the classical Griffin plot

?

Take into account Re !

*0

**

=

=αAAAMODIFIED

Page 31: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Griffin Plot

“Modified Griffin”

Plot

Data collapses onto a single curve !

Page 32: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Critical Mass

5

Page 33: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

)()1(

*

**

EANLOWER Cm

mfff

++

==

Best fit :

Govardhan & Williamson (2000)

Khalak & Williamson (1999)

Hover, Techet & Triantafyllou (1998)

Anand (1985)

Equation for Oscillation Frequency

CEA = - 0.54

Page 34: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

CRITICAL MASS RATIO

m*CRIT = 0.54

If m* → 0.54 , f* → ∞

If m* < m*CRIT , • Lower branch does not exist

• Get stuck on upper branch

)54.0()1(

*

**

−+

==m

mfffN

LOWER

Page 35: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Consider : U* = 100 fosc ~ 17 fNU* = 500 fosc ~ 87 fN

What if m* below critical ?

Why not ?

Radically different from classical resonance

m* = 0.52

Page 36: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

You are here

Get bigger / faster water channel

Reach much higher U*

Will not prove anything !

GO RIGHT TO INFINITY !

Page 37: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Infinite U*

DfUUN

* =

U → ∞

D → 0

fN → 0

NO !

NO !

YES !

0 k make ... /~ =mkfN

REMOVE SPRINGS !

Page 38: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

m* = 1.7

• Easily move with a feather• Strong vortices……

Expect large vibrations

Remove springs !!!

….Now what happens ???

Page 39: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

k = 0 , NO SPRINGS

m* = 1.7

Page 40: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

k = 0 , NO SPRINGS

Now: Remove mass gradually

m* = 0.6

Page 41: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

k = 0 , NO SPRINGS

m* = 0.53

Page 42: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Experiments for INFINITE U*

Page 43: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

m* = 0.78 m* = 0.45

Rising Cylinder Trajectories

Page 44: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Vortex Dynamics Behind a Rising Sphere

m* = 0.08

Page 45: New Phenomena in Vortex-Induced Vibrations€¦ · New Phenomena in Vortex-Induced Vibrations ... • Bridges and chimney stacks ... 2S-2P Hybrid Mode Techet,

Vortex Dynamics Behind a Rising Spherem* = 0.08