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Speed of sound at 20oC and 1 atm
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λmin
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kD0 = 0.02
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1
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2
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3
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Click Add.
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4
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In the Select Physics tree, select Acoustics>Pressure Acoustics>Pressure Acoustics, Transient (actd).
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5
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Click Add.
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6
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In the Select Physics tree, select Acoustics>Pressure Acoustics>Pressure Acoustics, Transient (actd).
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7
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Click Add.
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8
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Click
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9
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10
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Click
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1
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2
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3
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4
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Browse to the model’s Application Libraries folder and double-click the file probe_tube_microphone_parameters.txt.
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1
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2
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Browse to the model’s Application Libraries folder and double-click the file probe_tube_microphone_geom_sequence.mph.
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3
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4
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5
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1
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2
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3
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In the tree, select Built-in>Air.
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4
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5
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In the tree, select Built-in>Air.
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6
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7
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1
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2
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1
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1
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3
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1
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In the Model Builder window, under Component 1 (comp1)>Pipe Acoustics, Transient (patd) click Pipe Properties 1.
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2
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3
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From the list, choose Circular.
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4
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5
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6
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9
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5
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1
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3
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In the Settings window for Cylindrical Wave Radiation, locate the Cylindrical Wave Radiation section.
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4
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1
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2
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3
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4
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5
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6
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7
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1
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In the Model Builder window, under Component 1 (comp1) click Pressure Acoustics, Transient 2 (actd2).
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2
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3
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5
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1
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3
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4
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1
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In the Physics toolbar, click
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2
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In the Settings window for Acoustic-Pipe Acoustic Connection, locate the Coupled Interfaces section.
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3
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1
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2
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3
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4
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5
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Locate the Pressure Acoustics, Transient 2 (actd2) section. From the Number of mesh elements per wavelength list, choose User defined.
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6
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7
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8
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8
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1
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3
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1
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2
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3
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In the Model Builder window, expand the Study 1>Solver Configurations>Solution 1 (sol1)>Time-Dependent Solver 1 node.
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4
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Right-click Study 1>Solver Configurations>Solution 1 (sol1)>Time-Dependent Solver 1 and choose Fully Coupled.
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5
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In the Model Builder window, under Study 1>Solver Configurations>Solution 1 (sol1)>Time-Dependent Solver 1 click Fully Coupled 1.
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6
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1
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2
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3
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4
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5
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6
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7
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8
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Click OK.
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9
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10
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1
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2
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3
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4
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5
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6
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2
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3
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4
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5
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6
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1
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2
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Click
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1
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2
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1
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2
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3
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4
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5
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4
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5
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1
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2
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3
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4
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On the object cone1, select Boundary 4 only.
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1
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2
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3
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4
|
Click to expand the Layers section.
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