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A01=Daniel J. Rixen
A01=Michel Geradin
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Age Group_Uncategorized
Author_Daniel J. Rixen
Author_Michel Geradin
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Category1=Non-Fiction
Category=TGMD4
Category=TNC
COP=United States
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Language_English
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Price_€100 and above
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Mechanical Vibrations: Theory and Application to Structural Dynamics

English

By (author): Daniel J. Rixen Michel Geradin

Mechanical Vibrations: Theory and Application to Structural Dynamics, Third Edition is a comprehensively updated new edition of the popular textbook. It presents the theory of vibrations in the context of structural analysis and covers applications in mechanical and aerospace engineering.

Key features include:

  • A systematic approach to dynamic reduction and substructuring, based on duality between mechanical and admittance concepts
  • An introduction to experimental modal analysis and identification methods
  • An improved, more physical presentation of wave propagation phenomena
  • A comprehensive presentation of current practice for solving large eigenproblems, focusing on the efficient linear solution of large, sparse and possibly singular systems
  • A deeply revised description of time integration schemes, providing framework for the rigorous accuracy/stability analysis of now widely used algorithms such as HHT and Generalized-
  • Solved exercises and end of chapter homework problems
  • A companion website hosting supplementary material
See more
Current price €101.64
Original price €106.99
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A01=Daniel J. RixenA01=Michel GeradinAge Group_UncategorizedAuthor_Daniel J. RixenAuthor_Michel Geradinautomatic-updateCategory1=Non-FictionCategory=TGMD4Category=TNCCOP=United StatesDelivery_Delivery within 10-20 working daysLanguage_EnglishPA=AvailablePrice_€100 and abovePS=Activesoftlaunch
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Product Details
  • Weight: 1071g
  • Dimensions: 178 x 252mm
  • Publication Date: 30 Jan 2015
  • Publisher: John Wiley & Sons Inc
  • Publication City/Country: United States
  • Language: English
  • ISBN13: 9781118900208

About Daniel J. RixenMichel Geradin

Michel Géradin holds an Engineering Degree in Physics and a PhD from ULg (University of Liège Belgium). Successively  he has been a research fellow from the Belgian FNRS (19681979)  Professor of Structural Dynamics at ULg (19792010) and Unit Head of the European Laboratory for Structural Assessment (ELSA) of the JRC (European Commission  Ispra Italy) (19972010). He has also been a Visiting Scholar at Stanford University (1973-1974) and Visiting Professor at the University of Colorado (1986-1987).  He developed research activity in finite element methodology computational methods in structural dynamics and multibody dynamics. He has been a co-author of the finite element software SAMCEF and co-founding member  of Samtech SA in 1986.  He is Doctor Honoris Causa at the Technical University of Lisbon (1996) and École Centrale de Nantes (2007) and an Associate  Member of the Royal Academy of Sciences of Belgium (2000). He is the co-author of Flexible Multibody Dynamics. A  Finite Element Approach (Wiley 2000).  Daniel Rixen holds an MSc in Aerospace Vehicle Design from the College of Aeronautics in Cranfield (UK) and received his Mechanical Engineering and Doctorate degree from the University of Liège (Belgium) supported by the Belgium National Research Fund. After having spent two years as researcher at the Center for Aerospace Structures (University of Colorado Boulder) between 2000 and 2012 he chaired the Engineering Dynamic group at the Delft University of Technology (The Netherlands). Since 2012 he heads the Institute for Applied Mechanics at the Technische Universität München (Germany). Next to teaching his passion comprises research on numerical and simulation methods as well as experimental techniques involving structural and multiphysical applications in e.g. aerospace automotive mechatronics biodynamics and wind energy. A recurring aspect in his investigation is the interaction between system components such as in domain decomposition for parallel computing or component synthesis in dynamic model reduction and in experimental substructuring.

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