THEORY OF
MATRIX STRUCTURAL ANALYSIS BOOK BY J. S. PRZEMIENIECKI – PDF FREE DOWNLOAD
MATRIX STRUCTURAL ANALYSIS BOOK BY J. S. PRZEMIENIECKI – PDF FREE DOWNLOAD
ABOUT THE BOOK
|
THEORY
OF MATRIX STRUCTURAL ANALYSIS
OF MATRIX STRUCTURAL ANALYSIS
AUTHOR
: J S PRZEMIENIECKI (Institute Senior Dean and Dean of Engineering Air Force
Institute of Technology)
: J S PRZEMIENIECKI (Institute Senior Dean and Dean of Engineering Air Force
Institute of Technology)
PUBLISHERS
: DOVER PUBLICATIONS, INC., NEW YORK
: DOVER PUBLICATIONS, INC., NEW YORK
In this text
the general theory of matrix structural analysis is presented. The following
fundamental principles and theorems and their applications to matrix theory are
discussed: principles of virtual displacements and virtual forces,
Castigliano’s theorems, minimum-strain-energy theorem,
minimum-complementary-strain-energy theorem, and the unit-displacement and
unit-load theorems. The matrix displacement and force methods of analysis are
presented together with the elastic, thermal, and inertial properties of the
most commonly used structural elements. Matrix formulation of dynamic analysis
of structures, calculation of vibration frequencies and modes, and dynamic
response of undamped and damped structural systems are included. Furthermore,
structural synthesis, nonlinear effects due to large deflections, inelasticity,
creep, and buckling are also discussed.
the general theory of matrix structural analysis is presented. The following
fundamental principles and theorems and their applications to matrix theory are
discussed: principles of virtual displacements and virtual forces,
Castigliano’s theorems, minimum-strain-energy theorem,
minimum-complementary-strain-energy theorem, and the unit-displacement and
unit-load theorems. The matrix displacement and force methods of analysis are
presented together with the elastic, thermal, and inertial properties of the
most commonly used structural elements. Matrix formulation of dynamic analysis
of structures, calculation of vibration frequencies and modes, and dynamic
response of undamped and damped structural systems are included. Furthermore,
structural synthesis, nonlinear effects due to large deflections, inelasticity,
creep, and buckling are also discussed.
The examples
illustrating the various applications of the theory of matrix structural
analysis have been chosen so that a slide rule is sufficient to carry out the
numerical calculations. For the benefit of the reader who may be unfamiliar
with the matrix algebra, Appendix A discusses the matrix operations and their
applications to structural analysis. Appendix B gives an extensive bibliography
on matrix methods of structural analysis.
illustrating the various applications of the theory of matrix structural
analysis have been chosen so that a slide rule is sufficient to carry out the
numerical calculations. For the benefit of the reader who may be unfamiliar
with the matrix algebra, Appendix A discusses the matrix operations and their
applications to structural analysis. Appendix B gives an extensive bibliography
on matrix methods of structural analysis.
This book
originated as lecture notes prepared for a graduate course in Matrix Structural
Analysis, taught by the author at the Air Force Institute of Technology and at
the Ohio State University. The book is intended for both the graduate student
and the structural engineer who wish to study modern methods of structural
analysis; it should also be valuable as a reference source for the practicing
structural engineer.
originated as lecture notes prepared for a graduate course in Matrix Structural
Analysis, taught by the author at the Air Force Institute of Technology and at
the Ohio State University. The book is intended for both the graduate student
and the structural engineer who wish to study modern methods of structural
analysis; it should also be valuable as a reference source for the practicing
structural engineer.
CONTENTS
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1. MATRIX
METHODS
METHODS
2. BASIC
EQUATIONS OF ELASTICITY
EQUATIONS OF ELASTICITY
3. ENERGY
THEOREMS
THEOREMS
4. STRUCTURAL
IDEALIZATION
IDEALIZATION
5. STIFFNESS
PROPERTIES OF STRUCTURAL ELEMENTS
PROPERTIES OF STRUCTURAL ELEMENTS
6. THE
MATRIX DISPLACEMENT METHOD
MATRIX DISPLACEMENT METHOD
7. FLEXIBILITY
PROPERTIES OF STRUCTURAL ELEMENTS
PROPERTIES OF STRUCTURAL ELEMENTS
8. THE
MATRIX FORCE METHOD
MATRIX FORCE METHOD
9. ANALYSIS
OF SUBSTRUCTURES
OF SUBSTRUCTURES
10. DYNAMICS
OF ELASTIC SYSTEMS
OF ELASTIC SYSTEMS
11. INERTIA
PROPERTIES OF STRUCTURAL ELEMENTS
PROPERTIES OF STRUCTURAL ELEMENTS
12. VIBRATIONS
OF ELASTIC SYSTEMS
OF ELASTIC SYSTEMS
13. DYNAMIC
RESPONSE OF ELASTIC SYSTEMS
RESPONSE OF ELASTIC SYSTEMS
14. STRUCTURAL
SYNTHESIS
SYNTHESIS
15. NONLINEAR
STRUCTURAL ANALYSIS
STRUCTURAL ANALYSIS
* Above mentioned topics are main topics of this book and there are many
sub-topics under those. Please refer the Preview below for detailed contents *
sub-topics under those. Please refer the Preview below for detailed contents *
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