Stochastic Structural Dynamics, 9781118342350
Hardcover
Finite element analysis unlocks structural dynamics under random, complex loads.

Stochastic Structural Dynamics

application of finite element methods

$308.12

  • Hardcover

    350 pages

  • Release Date

    16 December 2013

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Summary

Stochastic Structural Dynamics: Finite Element Applications

One of the first books to provide in-depth and systematic application of finite element methods to the field of stochastic structural dynamics.

The parallel developments of the Finite Element Methods in the 1950’s and the engineering applications of stochastic processes in the 1940’s provided a combined numerical analysis tool for the studies of dynamics of structures and structural systems under random loadings. In…

Book Details

ISBN-13:9781118342350
ISBN-10:1118342356
Author:Cho W.S. To
Publisher:John Wiley & Sons Inc
Imprint:John Wiley & Sons Inc
Format:Hardcover
Number of Pages:350
Edition:1st
Release Date:16 December 2013
Weight:758g
Dimensions:250mm x 175mm x 19mm
About The Author

Cho W.S. To

Cho Wing Solomon To is Professor of Mechanical Engineering at the University of Nebraska-Lincoln, USA. He gained his Ph.D from the University of Southampton, UK, in 1980. Prior to joining UNL, he was a Professor at the University of Western Ontario and an Associate Professor at the University of Calgary. He was a Research Fellow of the Natural Sciences and Engineering Research Council of Canada from 1982-1992, and a Research Fellow at the Institute of Sound and Vibration Research (ISVR), University of Southampton. He is a member of the American Society of Mechanical Engineers (ASME), the American Academy of Mechanics (AAM), the Society of Industrial and Applied Mathematics (SIAM), and a founder Fellow of the Institution of Diagnostics Engineers, U.K. He served as chair of the ASME Finite Element Techniques and Computational Technologies Technical Committee. Dr To’s research interests include Sound and Vibration Studies, Solid and Computational Mechanics, and System Dynamics and Controls.

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