Computer Techniques in Vibration

 
Edition number: 1
Publisher: CRC Press
Date of Publication:
 
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Short description:

Understanding vibration behavior in modern systems is a complex task, requiring detailed mathematical models to evaluate the sources and effects of vibrations. Fortunately, there are a number of software tools available for modeling and analyzing this behavior. In chapters drawn from the highly popular Vibration and Shock Handbook, Computer Techniques in Vibration summarizes and demonstrates a variety of software applications, tools, and techniques used to explore mechanical vibrations. Compiling critical information into a convenient, thorough, and up-to-date source, expert contributors discuss finite element methods, fast Fourier transform, wavelet analysis, the use of MATLAB? toolboxes, and approaches to vibration signal analysis.

Long description:
Understanding and controlling vibration is critical for reducing noise, improving work environments and product quality, and increasing the useful life of industrial machinery and other mechanical systems. Computer-based modeling and analytical tools provide fast, accurate, and efficient means of designing and controlling a system for improved vibratory and, subsequently, acoustic performance. Computer Techniques in Vibration provides an overview as well as a detailed account and application of the various tools and techniques available for modeling and simulating vibrations.

Drawn from the immensely popular Vibration and Shock Handbook, each expertly crafted chapter of this book includes convenient summary windows, tables, graphs, and lists to provide ready access to the important concepts and results. Working systematically from general principles to specific applications, the coverage spans from numerical techniques, modeling, and software tools to analysis of flexibly supported multibody systems, finite element applications, vibration signal analysis, fast Fourier transform (FFT), and wavelet techniques and applications. MATLAB? toolboxes and other widely available software packages feature prominently in the discussion, accompanied by numerous examples, sample outputs, and a case study.

Instead of wading through heavy volumes or software manuals for the techniques you need, find a ready collection of eminently practical tools in Computer Techniques in Vibration.
Table of Contents:
Numerical Techniques. Vibration Modeling and Software Tools. Computer Analysis of Flexibly Supported Multibody Systems. Finite Element Applications in Dynamics. Vibration Signal Analysis. Wavelets - Concepts and Applications. Index. (Note: there is no Glossary in this volume).