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The linear perturbation procedure is not supported for cyclic symmetry buckling analyses.

7.3.5. Solving a Harmonic Cyclic Symmetry Analysis

Two harmonic analysis methods are available for cyclic structures: full and mode-superposition. The advantages of the full method are:

You do no need to choose frequencies and mode shapes that adequately represent the response.

The non-cyclic loading can be arbitrary and may be applied to any sector.

The advantages of the mode-superposition method are:

It is faster than the full method.

Postprocessing is more encompassing.

Only engine order loading (traveling wave excitation) is supported in a mode-superposition analysis. Cyclic loading is a special case of engine order loading where the engine order is equal to zero.

7.3.5.1. Solving a Full Harmonic Cyclic Symmetry Analysis

Cyclic or non-cyclic loading may be applied in a full harmonic cyclic analysis.

The flowchart below illustrates the process involved in a harmonic cyclic symmetry analysis with noncyclic loading.

 

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Solving a Cyclic Symmetry Analysis

Figure 7.16: Process Flow for a Full Harmonic Cyclic Symmetry Analysis (Non-Cyclic Loading)

For more information, see Non-Cyclically Symmetric Loading (p. 173)

7.3.5.1.1. Solving a Prestressed Full Harmonic Cyclic Symmetry Analysis

The process for solving a prestressed harmonic cyclic symmetry analysis is essentially the same as a stress free case, except that a static solution is necessary to calculate the prestress in the basic sector. The prestress state of the sector may be from a linear static or a large-deflection nonlinear static analysis. Non-cyclic loading cannot be applied in the static solution.

The linear perturbed harmonic cyclic symmetric analysis is supported for the following methods: AUTO, FULL, VT (see HROPT command).

Cyclic or non-cyclic loading may be applied in a prestressed full harmonic cyclic analysis.

The flowchart below illustrates the process of a harmonic cyclic symmetry analysis with non-cyclic loading.

Release 15.0 - © SAS IP, Inc. All rights reserved. - Contains proprietary and confidential information

 

of ANSYS, Inc. and its subsidiaries and affiliates.

185