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Piezoelectric Models

Piezoelectric simulation is a coupled field problem between structural and piezoelectrical parts. If the mechanical part is limited to small deformations analysis, we have a linear system of ordinary differentical equatinos and linear model reduction can be employed.

M. Kurch, H. Atzrodt, S. Herold, D. Mayer.
Auslegung und Simulation aktiver Systeme.
ANSYS Conference & 25. CADFEM Users Meeting, 21. - 23. November 2007, Internationales Congress Center Dresden.

J. S. Han.
Krylov Subspace-Based Model Order Reduction for Piezoelectric Structures.
2008 KSME CAE and Applied Mechanics Division's Spring Conference, pp. 13-14, KSME 08CA007, 2008. See also some slides.

S.-O. Han, K. Wolf.
Varianzbasierte Sensitivitaetsanalyse: Ein Beitrag zur Bewertung der Systemzuverlaessigkeit adaptiver Strukturen.
2. DVM Tagung AK Zuverlässigkeit mechatronischer und adaptronischer Systeme, 02.-03.04.2008, Koblenz.

K. Wolf, S.-O. Han, T. Doll, L. Kurtze, T. Bein, H. Hanselka.
Performence Assessment of active noise reduction systems.
9th Biennial ASME Conference on Engineering Systems Design and Analysis (ESDA) 2008, 07.-09.07.2008, Haifa, Israel, paper ESDA2008-59555.

K. Wolf, S.-O. Han, H. Hanselka.
Sensitivity based performance evaluation and reliability assessment of adaptive systems.
SPIE Conference on Active and Passive Smart Structures and Integrated Systems, 09.-13.03.2008, San Diego, USA. Proc. of SPIE Vol. 6928, 69281A, (2008)

S.-O. Han, K. Wolf, H. Hanselka, T. Bein.
Design and Analysis of an Adaptive Vibration Isolation System considering Large Scale Parameter Variations.
SPIE Conference on Active and Passive Smart Structures and Integrated Systems, 2009, Proc. of SPIE Vol. 7288, 728829.

Matthias Kurch, Christoph Klein, and Dirk Mayer.
A framework for numerical modeling and simulation of shunt damping technology.
The Sixteenth International Congress on Sound and Vibration, Krakow, 5-9 July, 2009, 8 pp.


Evgenii B. Rudnyi, CADFEM
My e-mail is erudnyi at cadfem point de. Phone is +49 8092 7005 82.

Designed by
Masha Rudnaya