Description

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-α
  • Solved exercises and end of chapter homework problems
  • A companion website hosting supplementary material

Mechanical Vibrations: Theory and Application to Structural Dynamics

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£91.95

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Usually despatched within days
Hardback by Michel Geradin , Daniel J. Rixen

1 in stock

Short Description:

Mechanical Vibrations: Theory and Application to Structural Dynamics, Third Edition is a comprehensively updated new edition of the popular textbook.... Read more

    Publisher: John Wiley & Sons Inc
    Publication Date: 30/01/2015
    ISBN13: 9781118900208, 978-1118900208
    ISBN10: 1118900200

    Number of Pages: 616

    Non Fiction , Technology, Engineering & Agriculture , Education

    Description

    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-α
    • Solved exercises and end of chapter homework problems
    • A companion website hosting supplementary material

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