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vk.com/club152685050Using the VOF Model | vk.com/id446425943

a. Enter 1.0e-8 seconds for the Time Step Size (s).

Note

Small time steps are required to capture the oscillation of the droplet interface and the associated high velocities. Failure to use sufficiently small time steps may cause differences in the results between platforms.

b.Enter 3000 for the Number of Time Steps.

c.Click Calculate.

The solution will run for 3000 iterations.

17.4.11.Postprocessing

1.Read the data file for the solution after 6 microseconds (inkjet-1-00600.dat.gz).

File Read Data...

2.Create and display a filled contour of water volume fraction after 6 microseconds (Figure 17.5: Contours of Water Volume Fraction After 6 μs (p. 626)).

Results Graphics Contours New...

 

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Setup and Solution

a.Change the Contour Name to contour-volume-fraction.

b.Enable Filled in the Options group box.

c.Select Phases... and Volume fraction from the Contours of drop-down lists.

d.Select water-liquid from the Phase drop-down list.

e.Click Save/Display.

Tip

In order to display the contour plot in the graphics window, you may need to click the

Fit to Window button.

3.Display contours of water volume fraction after 6, 12, 18, 24, and 30 microseconds (Figure 17.6: Contours of Water Volume Fraction After 12 μs (p. 626) Figure 17.9: Contours of Water Volume Fraction After 30 μs (p. 628)).

a. Read the data file for the solution after 6 microseconds (inkjet-1-0600.dat.gz).

File Read Data...

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b. Reload the contour graphic saved in the previous step.

Results Graphics Contours contour-volume-fraction Display c. Repeat these steps for the 12, 18, 24, and 30 microseconds files.

Figure 17.5: Contours of Water Volume Fraction After 6 μs

Figure 17.6: Contours of Water Volume Fraction After 12 μs

 

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Setup and Solution

Figure 17.7: Contours of Water Volume Fraction After 18 μs

Figure 17.8: Contours of Water Volume Fraction After 24 μs

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of ANSYS, Inc. and its subsidiaries and affiliates.

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