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Daniel Rixen

Kirjat ja teokset yhdessä paikassa: 3 kirjaa, julkaisuja vuosilta 2013-2020, suosituimpien joukossa Substructuring in Engineering Dynamics. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

3 kirjaa

Kirjojen julkaisuhaarukka 2013-2020.

Substructuring in Engineering Dynamics

Substructuring in Engineering Dynamics

Matthew S. Allen; Daniel Rixen; Maarten van der Seijs; Paolo Tiso; Thomas Abrahamsson; Randall L. Mayes

Springer Nature Switzerland AG
2020
nidottu
This book reviews the most common state-of-the art methods for substructuring and model reduction and presents a framework that encompasses most method, highlighting their similarities and differences. For example, popular methods such as Component Mode Synthesis, Hurty/Craig-Bampton, and the Rubin methods, which are popular within finite element software, are reviewed. Similarly, experimental-to-analytical substructuring methods such as impedance/frequency response based substructuring, modal substructuring and the transmission simulator method are presented. The overarching mathematical concepts are reviewed, as well as practical details needed to implement the methods. Various examples are presented to elucidate the methods, ranging from academic examples such as spring-mass systems, which serve to clarify the concepts, to real industrial case studies involving automotive and aerospace structures. The wealth of examples presented reveal both the potential and limitations of the methods.
Substructuring in Engineering Dynamics

Substructuring in Engineering Dynamics

Matthew S. Allen; Daniel Rixen; Maarten van der Seijs; Paolo Tiso; Thomas Abrahamsson; Randall L. Mayes

Springer Nature Switzerland AG
2019
sidottu
This book reviews the most common state-of-the art methods for substructuring and model reduction and presents a framework that encompasses most method, highlighting their similarities and differences. For example, popular methods such as Component Mode Synthesis, Hurty/Craig-Bampton, and the Rubin methods, which are popular within finite element software, are reviewed. Similarly, experimental-to-analytical substructuring methods such as impedance/frequency response based substructuring, modal substructuring and the transmission simulator method are presented. The overarching mathematical concepts are reviewed, as well as practical details needed to implement the methods. Various examples are presented to elucidate the methods, ranging from academic examples such as spring-mass systems, which serve to clarify the concepts, to real industrial case studies involving automotive and aerospace structures. The wealth of examples presented reveal both the potential and limitations of the methods.