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vk.com/club152685050Using the Adjoint Solver|vk2D.com/id446425943La inar Flow Past a Cylinder

24.3. Problem Description

The configuration is a circular cylinder, bounded above and below by symmetry planes. The flow is laminar and incompressible with a Reynolds number of 40, based on the cylinder diameter. At this Reynolds number, the flow is steady.

24.4. Setup and Solution

The following sections describe the setup steps for this tutorial:

24.4.1.Step 1: Preparation

24.4.2.Step 2: Define Observables

24.4.3.Step 3: Compute the Drag Sensitivity

24.4.4.Step 4: Postprocess and Export Drag Sensitivity

24.4.5.Step 5: Compute Lift Sensitivity

24.4.6.Step 6: Modify the Shape

24.4.1. Step 1: Preparation

1.Download the adjoint_cylinder.zip file here.

2.Unzip adjoint_cylinder.zip to your working directory.

3.The files cylinder_tutorial.cas and cylinder_tutorial.dat can be found in the folder .

4.Use Fluent Launcher to start the 2D version of ANSYS Fluent, with the Double Precision and Display Mesh After Reading options enabled.

5.Load the converged case and data file for the cylinder geometry.

File Read Case & Data...

When prompted, browse to the location of the case and data files and select cylinder_tutorial.cas to load. The corresponding data file will automatically be loaded as well.

Note

After you read in the mesh, it will be displayed in the embedded graphics windows, since you enabled the appropriate display option in Fluent Launcher.

The data file contains a previously computed flow solution that will serve as the starting point for the adjoint calculation. Part of the mesh and the velocity field are shown below:

 

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Setup and Solution

Figure 24.1: Mesh Close to the Cylinder Surface

Figure 24.2: Contours of Velocity Magnitude

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24.4.2. Step 2: Define Observables

Begin setting up the adjoint solver by opening the Adjoint Observables dialog box. Here you will create lift and drag observables. Clicking on any GUI widget under Adjoint-Based Design will activate the adjoint solver.

Design Adjoint-Based Observable...

Figure 24.3: Adjoint Observables Dialog Box

1. Click the Manage... button to open the Manage Adjoint Observables dialog box.

 

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Setup and Solution

Figure 24.4: Manage Adjoint Observables Dialog Box

2.Click the Create... button in the Manage Adjoint Observables dialog box to open the Create New Observable dialog box.

Figure 24.5: Create New Observable Dialog Box

3.In the Create New Observable dialog box: a. Ensure that Observable types is selected.

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b.Select force from the selection list.

c.Enter force-drag for Name.

d.Click OK to close the dialog box.

4.In the Manage Adjoint Observables dialog box, the newly created force-drag observable appears and must now be configured. (Figure 24.6: Manage Observables Dialog Box (p. 800)):

a.Select force-drag in the Observables list.

Figure 24.6: Manage Observables Dialog Box

b.Select wall under Wall Zones. This is the cylinder wall on which you want the force to be evaluated.

c.Ensure that the X-Component direction is set to 1 and the Y-Component direction is set to 0.

d.Click Apply to commit the settings for force-drag.

5.Repeat the process in the Manage Adjoint Observables dialog box to create a lift observable with the following settings:

 

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