Guided Wave Propagation Simulation by ANSYS

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Page 1: Guided Wave Propagation Simulation by ANSYS

Guided Wave Propagation simulated by ANSYS

Lee Ping HungTaiwan2016.11

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Step by Step

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Step by Step

2.5m

260 mm

A

B C

4 m

End A : excitation

1 mSupport Bracket

End B

100 mm

Model Loading

Post 1Post 26

Predict the reflected signal

Visualize wave propagation

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Element

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Material

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Geometry

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Mesh

AxialCircumferential

LeN

=0.05λ=15

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Coordinate System Transfer

1. Change CS of WorkPlane to Cylindrical

2. Transfer the CS of all nodes from Cartesian to Cylindrical

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Loading Signal by Matlab or EXCEL

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Copy Loading Signal

CopyDATA: H

CopyDATA: t

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Loading Signal in txt format

Past it to Note, then create an

txt file

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Array Parameter Table for loading signalCreate the Array Parameter Table (167×1)

1.

2.

3.

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4.

5.

6.Using the ‘txt file’ for Loading Signal

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SOLUTION: Transient Analysis

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Setup the (ITS)

Time for analysis

dt< 0.8×(Le/Velocity)

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Apply the loading signal on the nodes

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Axis-symmetric Loading for L or T modes

T(0,1)

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Solve

• If you need more steps than1000, you have to input below instruction before you solve

• finish /config,nres,5000 /SOLU SAVE/STATUS,SOLUSOLVE

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POST 1: see wave propagation

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POST 26: collect the time domain signal for the parameter you select

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POST 26

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Guided Wave with different features on pipes

檢測盲區

General Corrosion

Pipe Support

Elbow Coating

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L modes and T(0,1) mode

L(0,1) and L(0,2) mode T(0,1) mode

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T(0,1) V.S L-Welded Support

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T(0,1) V.S C-Welded Support

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T(0,1) V.S Angle Bend

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T(0,1) V.S General Corrosion