Advanced Finite Element Solutions for Simulating Dynamic Response and Structural Modifications
FEMtools Dynamics contains tools for:
A superelement is defined by grouping a number of elements and solve for this substructure separately. Superelements offer great time-savings in application that require significant re-analysis like time-domain and frequency domain responses analysis, design optimization, probabilistic analysis, robust design and multi-body simulations. Superelements are also used to overcome situations where a full solution is not even possible because of limited computer resources (internal memory, disk space).
To obtain FRFs, the response function is divided by the excitation force. Because these functions do not contain force information, they only depend on mass, stiffness and damping properties of the structure, just like the modal properties. Therefore they are also suitable as response for correlation analysis, sensitivity analysis and model updating.
In harmonic response analysis, the excitation is defined in the frequency domain. All of the applied forces are known at each forcing frequency.
Structural Dynamics Modification (SDM) is a design-oriented tool to rapidly simulate effects of structural changes on the modal parameters and derived results like FRFs or operational shapes. Structural changes can be modeled as simple springs, masses, dampers, or any type of finite element (bar, beam, shell, volume). Because only a model geometry and modal parameters are used, SDM works on finite element data, test data and hybrid models.
The benefit of using SDM is that all analysis is done in modal space. structural modifications are transformed to equivalent changes of mass, stiffness and damping expressed in modal coordinates. The resulting set of equations can be solved at minimal computational expense and can therefore be done real-time.
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