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    Keywords: Impact ; Impact force modeling ; viscoelastic materials ; pounding ; vibration suppression ; energy dissipation ; damping ; tuned mass damper (TMD) ; pounding tuned mass damper (PTMD) ; active mass damper (AMD) ; impact damper ; frication damper ; particle damper ; tuned liquid damper ; tuned liquid column damper ; active vibration control ; passive vibration control ; vibration control devices ; vibration damper
    Description / Table of Contents: The study of vibrations and the control of vibrations has been a fundamental cornerstone of engineering. Problems related to vibrations are ubiquitous, from the study of fatigue of airplane wings in turbulent flow to the suppression of vibrations in subsea structures. The breadth of vibration engineering is matched by the depth of field. Numerous methods have been used to understand vibrations, and a wide range of devices have been developed to control vibrations. Many vibration control problems can be considered as a problem of energy dissipation and vibration damping. The problem encompasses multiple interdependent aspects of research and engineering, including the development of models, implementation of algorithms, and design of devices based on data. Discoveries made in one aspect can lead to breakthroughs in other aspects. Thus, the scope and aims of this Special Issue are to receive and accumulate new knowledge about vibration control, especially for topics related to energy dissipation methods for vibration damping. Desired topics include but are not limited to vibration modeling, algorithms for active vibration control, passive damping methods, vibration damping devices, new materials for energy dissipation, etc.
    Pages: Online-Ressource (VIII, 254 Seiten) , Illustrationen, Diagramme, Karten
    Edition: Printed Edition of the Special Issue Published in Applied Sciences
    ISBN: 9783038427865
    Language: English
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