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Vibration Simulation Using MATLAB and ANSYS [Hardcover] Hatch, Michael R.
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Vibration Simulation Using MATLAB and ANSYS [Hardcover] Hatch, Michael R.
US $107.97US $107.97
Tue, Aug 12, 02:13 PMTue, Aug 12, 02:13 PM
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Vibration Simulation Using MATLAB and ANSYS [Hardcover] Hatch, Michael R.

US $107.97
ApproximatelyC $148.45
Condition:
Very Good
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    Located in: Cambridge, Massachusetts, United States
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    Item specifics

    Condition
    Very Good: A book that does not look new and has been read but is in excellent condition. No obvious ...
    Artist
    Hatch, Michael R.
    ISBN
    9781584882053

    About this product

    Product Identifiers

    Publisher
    CRC Press LLC
    ISBN-10
    1584882050
    ISBN-13
    9781584882053
    eBay Product ID (ePID)
    1787775

    Product Key Features

    Number of Pages
    676 Pages
    Publication Name
    Vibration Simulation Using Matlab and Ansys
    Language
    English
    Subject
    Waves & Wave Mechanics, Mathematical & Statistical Software, Mechanical, General, Applied
    Publication Year
    2000
    Type
    Textbook
    Author
    Michael R. Hatch
    Subject Area
    Mathematics, Computers, Technology & Engineering, Science
    Format
    Hardcover

    Dimensions

    Item Height
    1.5 in
    Item Weight
    51 Oz
    Item Length
    9.5 in
    Item Width
    6.5 in

    Additional Product Features

    Intended Audience
    Scholarly & Professional
    LCCN
    00-055517
    Dewey Edition
    21
    Illustrated
    Yes
    Dewey Decimal
    620.3/01/13
    Table Of Content
    Transfer Analysis of Multi Degree of Freedom Systems. Zeros of Transfer Functions. Analysis of Multi-Degree of Freedom Systems by the Modal Analysis Method. Damping in Multi-Degree of Freedom Structural Systems. Principal Modes. State-Space Analysis of Multi-Degree of Freedom Systems. Analysis of Multi-Degree of Freedom Systems by the Modal Analysis Method. State-Space Form. Real and Complex Modes. Introduction to Finite Elements.
    Synopsis
    Transfer function form, zpk, state space, modal, and state space modal forms. For someone learning dynamics for the first time or for engineers who use the tools infrequently, the options available for constructing and representing dynamic mechanical models can be daunting. It is important to find a way to put them all in perspective and have them available for quick reference. It is also important to have a strong understanding of modal analysis, from which the total response of a system can be constructed. Finally, it helps to know how to take the results of large dynamic finite element models and build small MATLAB(R) state space models. Vibration Simulation Using MATLAB and ANSYS answers all those needs. Using a three degree-of-freedom (DOF) system as a unifying theme, it presents all the methods in one book. Each chapter provides the background theory to support its example, and each chapter contains both a closed form solution to the problem-shown in its entirety-and detailed MATLAB code for solving the problem. Bridging the gap between introductory vibration courses and the techniques used in actual practice, Vibration Simulation Using MATLAB and ANSYS builds the foundation that allows you to simulate your own real-life problems. Features Demonstrates how to solve real problems, covering the vibration of systems from single DOF to finite element models with thousands of DOF Illustrates the differences and similarities between different models by tracking a single example throughout the book Includes the complete, closed-form solution and the MATLAB code used to solve each problem Shows explicitly how to take the results of a realistic ANSYS finite element model and develop a small MATLAB state-space model Provides a solid grounding in how individual modes of vibration combine for overall system response, Incorporating the use of industry-standard software to help with problem solving, Vibration Simulation Using MATLAB and ANSYS explores the subject of vibration from a fairly sophisticated, mathematical point of view. With a three degree-of-freedom system as a unifying theme, the author develops the associated equations of motion, then in each chapter includes both a closed-form solution and the MATLAB code for solving a problem. The book's unique approach makes it especially useful for engineers who lack experience with state space, and by enhancing their ability to communicate, it will prove useful to the mechanical and control engineering communities as well., Transfer function form, zpk, state space, modal, and state space modal forms. For someone learning dynamics for the first time or for engineers who use the tools infrequently, the options available for constructing and representing dynamic mechanical models can be daunting. It is important to find a way to put them all in perspective and have them available for quick reference. It is also important to have a strong understanding of modal analysis, from which the total response of a system can be constructed. Finally, it helps to know how to take the results of large dynamic finite element models and build small MATLAB® state space models. Vibration Simulation Using MATLAB and ANSYS answers all those needs. Using a three degree-of-freedom (DOF) system as a unifying theme, it presents all the methods in one book. Each chapter provides the background theory to support its example, and each chapter contains both a closed form solution to the problem-shown in its entirety-and detailed MATLAB code for solving the problem. Bridging the gap between introductory vibration courses and the techniques used in actual practice, Vibration Simulation Using MATLAB and ANSYS builds the foundation that allows you to simulate your own real-life problems. Features Demonstrates how to solve real problems, covering the vibration of systems from single DOF to finite element models with thousands of DOF Illustrates the differences and similarities between different models by tracking a single example throughout the book Includes the complete, closed-form solution and the MATLAB code used to solve each problem Shows explicitly how to take the results of a realistic ANSYS finite element model and develop a small MATLAB state-space model Provides a solid grounding in how individual modes of vibration combine for overall system response
    LC Classification Number
    TJ177.H38 2001

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