tacoma narrows bridge from tpt. vertical oscillations the only observed oscillation up until an hour...

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Tacoma Narrows Bridge From TPT

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Page 1: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Tacoma Narrows Bridge

From TPT

Page 2: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Vertical Oscillations

The only observed oscillation up until an hour before the collapse was vertical.

Example of simple forced harmonic motion (sinusoidal motion of the deck due to an external sinusoidal force.)

Page 3: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Forced Harmonic Motion

1. The bridge deck oscillates at ωex, the angular frequency of the external sinusoidal force, not ω0, the natural angular frequency of the bridge deck.

Page 4: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Forced Harmonic Motion

2. The amplitude of the oscillation has a maximum when ωex = ω0.

In other words, a resonance behavior as a function of wind velocity ωex is proportional to the wind velocity.

Page 5: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Forced Harmonic Motion

The wind tunnel displayed both characteristics of forced harmonic motion.1. The frequency of the vertical oscillations varies linearly with the wind velocity.

Page 6: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Oscillating External Force

The OEF involved in the vertical oscillations is due to vortex shedding by the constant velocity wind separated by the deck of the bridge.

Page 7: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Oscillating External Force

Insert figure 2

These vortex arrays are two rows of vortices with opposite dirctions of circulation and with a frequency that is approximately proportional to the wind veocity.

Page 8: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Oscillating External Force

Insert figure 2

At the time the vertex breaks loose from the top (bottom) of the bridge deck, a downward (upward) force is exerted on the bridge deck.

Page 9: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Vertex Shedding Examples

1. Automobile radio antenna will oscillate ┴ direction of motion of a car at certain velocities.

2. Stop lights strung across the street will oscillate ┴ to the direction of the wind

3. Each flutter of a dropped piece of paper is one vortex being shed

Page 10: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Torsional Oscillations

Last 45 minutes – new twisting, torsional motion with very large amplitude –is the cause of the bridge collapse

Page 11: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Torsional Oscillations

is an aerodynamically induced self-excitation (or aerodynamic flutter).

This would give a steady-state solution.

Page 12: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Torsional Oscillations

The two characteristics of this steady state solution are motion at the natural frequency ω0 (not ωex, since there is no external sinusoidal torque), and no resonance behavior in the amplitude as a function of the wind velocity.

Page 13: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Torsional Oscillations

The wind tunnel model has both these characteristics. First, the frequency of the torsional motion does not change with wind velocity. No resonance behavior is observed.

Page 14: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple
Page 15: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Vertical Oscillation

Vertical oscillation – example of forced harmonic oscillations, where the vortex train created by the wind separated by the bridge deck is the sinusoidal external force.

Page 16: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Vertical Oscillation

Major Characteristics1. Frequency of the vertical oscillation

of the bridge deck is at the vortex shedding frequency.

2. The amplitude of the oscillation has a maximum when the vortex shedding frequency equals the natural vertical frequency of the bridge deck.

Page 17: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Torsional Oscillations

It is an aerodynamically induced self-excitation phenomenon, where the amplification mechanism is still being debated by the engineers.

Page 18: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple

Torsional Oscillations

Major characteristics of self-excitation oscillations are that the oscillating frequency is the natural torsional frequency of the bridge deck and there is no resonance phenomenon in the amplitude as a function of wind velocity.

Page 19: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple
Page 20: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple
Page 21: Tacoma Narrows Bridge From TPT. Vertical Oscillations The only observed oscillation up until an hour before the collapse was vertical. Example of simple