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vk.com/club152685050Modeling Evaporating Liquid| vk.com/id446425943Spray

1. Remove water vapor and carbon dioxide from the Mixture Species list.

Setup Materials Mixture Create/Edit...

a. Click the Edit button next to the Mixture Species drop-down list to open the Species dialog box.

i.Select carbon dioxide (co2) from the Selected Species selection list.

ii.Click Remove to remove carbon dioxide from the Selected Species list.

iii.In a similar manner, remove water vapor (h2o) from the Selected Species list.

iv.Click OK to close the Species dialog box.

b. Click Change/Create and close the Create/Edit Materials dialog box.

Note

It is good practice to click the Change/Create button whenever changes are made to material properties even though it is not necessary in this case.

16.4.6. Boundary Conditions

Specify boundary conditions using the Boundary Conditions task page.

 

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Setup and Solution

Setup Boundary Conditions

1. Set the boundary conditions for the inner air stream (central_air).

Setup Boundary Conditions central_air Edit...

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a.Enter 9.167e-5 kg/s for Mass Flow Rate.

b.Enter 0 for X-Component of Flow Direction.

c.Retain the default value of 0 for Y-Component of Flow Direction.

d.Enter 1 for Z-Component of Flow Direction.

e.Select Intensity and Hydraulic Diameter from the Specification Method drop-down list.

f.Enter 10 for Turbulent Intensity.

g.Enter 0.0037 m for Hydraulic Diameter.

h.Click the Thermal tab and enter 293 K for Total Temperature.

i.Click the Species tab and enter 0.23 for o2 in the Species Mass Fractions group box.

j.Click OK to close the Mass-Flow Inlet dialog box.

2.Set the boundary conditions for the air stream surrounding the atomizer (co-flow-air).

 

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Setup and Solution

Setup Boundary Conditions co-flow-air Edit...

a.Enter 1 m/s for Velocity Magnitude.

b.Select Intensity and Hydraulic Diameter from the Specification Method drop-down list.

c.Retain the default value of 5 for Turbulent Intensity.

d.Enter 0.0726 m for Hydraulic Diameter.

e.Click the Thermal tab and enter 293 K for Temperature.

f.Click the Species tab and enter 0.23 for o2 in the Species Mass Fractions group box.

g.Click OK to close the Velocity Inlet dialog box.

3.Set the boundary conditions for the exit boundary (outlet).

Setup Boundary Conditions outlet Edit...

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a.Select From Neighboring Cell from the Backflow Direction Specification Method drop-down list.

b.Retain Intensity and Viscosity Ratio from the Specification Method drop-down list.

c.Retain the default value of 5 for Backflow Turbulent Intensity (%).

d.Enter 5 for Backflow Turbulent Viscosity Ratio.

e.Click the Thermal tab and enter 293 K for Backflow Total Temperature.

f.Click the Species tab and enter 0.23 for o2 in the Species Mass Fractions group box.

g.Click OK to close the Pressure Outlet dialog box.

4.Set the boundary conditions for the swirling annular stream (swirling_air).

Setup Boundary Conditions swirling_air Edit...

 

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Setup and Solution

a.Select Magnitude and Direction from the Velocity Specification Method drop-down list.

b.Enter 19 m/s for Velocity Magnitude.

c.Select Cylindrical (Radial, Tangential, Axial) from the Coordinate System drop-down list.

d.Enter 0 for Radial-Component of Flow Direction.

e.Enter 0.7071 for Tangential-Component of Flow Direction.

f.Enter 0.7071 for Axial-Component of Flow Direction.

g.Select Intensity and Hydraulic Diameter from the Specification Method drop-down list.

h.Retain the default value of 5 for Turbulent Intensity.

i.Enter 0.0043 m for Hydraulic Diameter.

j.Click the Thermal tab and enter 293 K for Temperature.

k.Click the Species tab and enter 0.23 for o2 in the Species Mass Fractions group box.

l.Click OK to close the Velocity Inlet dialog box.

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