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This revised and significantly expanded edition contains a rigorous examination of key concepts, new chapters and discussions within existing chapters, and added reference materials in the appendix, while retaining its classroom-tested approach to helping readers navigate through the deep ideas, vast collection of the fundamental methods of structural analysis. The authors show how to undertake the numerous analytical methods used in structural analysis by focusing on the principal concepts, detailed procedures and results, as well as taking into account the advantages and disadvantages of…mehr
This revised and significantly expanded edition contains a rigorous examination of key concepts, new chapters and discussions within existing chapters, and added reference materials in the appendix, while retaining its classroom-tested approach to helping readers navigate through the deep ideas, vast collection of the fundamental methods of structural analysis. The authors show how to undertake the numerous analytical methods used in structural analysis by focusing on the principal concepts, detailed procedures and results, as well as taking into account the advantages and disadvantages of each method and sphere of their effective application. The end result is a guide to mastering the many intricacies of the range of methods of structural analysis. The book differentiates itself by focusing on extended analysis of beams, plane and spatial trusses, frames, arches, cables and combined structures; extensive application of influence lines for analysis of structures; simple and effective procedures for computation of deflections; introduction to plastic analysis, stability, and free and forced vibration analysis, as well as some special topics. Ten years ago, Professor Igor A. Karnovsky and Olga Lebed crafted a must-read book. Now fully updated, expanded, and titled Advanced Methods of Structural Analysis (Strength, Stability, Vibration), the book is ideal for instructors, civil and structural engineers, as well as researches and graduate and post graduate students with an interest in perfecting structural analysis.
Dr. Igor A. Karnovsky, Ph.D.,is a specialist in structural analysis, theory of vibration and optimal control of vibration. He has over 50 years of experience in research, teaching, and consulting in this field. He is the author of many scientific papers, and six books in Structural Dynamics and Structural Analysis, published with McGraw Hill and Springer in 2001-2016. He also holds a number of vibration-control-related patents.
Olga Lebed,.M.Sc. is a specialist in mechanics of materialsand structural analysis. She has more than 10 years of experience in teaching engineering courses, and more than 20 years of industry experience working in the fields of engineering and computer programming in 3D modelling. She is co-author of four books in Structural Dynamics and Structural Analysis published with McGraw Hill and Springer in 2001-2010.
Inhaltsangabe
Preface Introduction Part 1. Statically Determinate Structures 1 Kinematical Analysis of Structures 2 The Simplest Beams. Theory of Influence Lines 3 Multispan Hinged Beams and Frames 4 Plane Trusses 5 Space Frameworks 6 Three-Hinged Arches 7 Cables 8 Deflections of Elastic Structures Part 2. Statically Indeterminate Structures 9 The Force Method 10 The Displacement Method 11 Mixed Method 12 Influence Line Method 13 Matrix Stiffness Method Part 3. Special Topics 14 Plastic Behavior of Structures 15 Stability of Elastic Systems 16 Dynamics of Elastic Systems. Free Vibration 17 Dynamics of Elastic Systems. Forced Vibration 18 Special Topics of Structural Dynamics 19 Nonlinear Structural Analysis 20 Conclusion. Once More about Modeling of Structures 21 Fundamental Developments in the History of Structural Mechanics Appendix
PrefaceIntroductionPart 1. Statically Determinate Structures1Kinematical Analysis of Structures 2The Simplest Beams. Theory of Influence Lines 3Multispan Hinged Beams and Frames4Plane Trusses5Space Frameworks6Three-Hinged Arches7Cables8Deflections of Elastic StructuresPart 2. Statically Indeterminate Structures9The Force Method10The Displacement Method11Mixed Method12Influence Line Method 13Matrix Stiffness MethodPart 3. Special Topics 14Plastic Behavior of Structures15Stability of Elastic Systems 16Dynamics of Elastic Systems. Free Vibration17Dynamics of Elastic Systems. Forced Vibration18Special Topics of Structural Dynamics19Nonlinear Structural Analysis20Conclusion. Once More about Modeling of Structures21Fundamental Developments in the History of Structural MechanicsAppendix
Preface Introduction Part 1. Statically Determinate Structures 1 Kinematical Analysis of Structures 2 The Simplest Beams. Theory of Influence Lines 3 Multispan Hinged Beams and Frames 4 Plane Trusses 5 Space Frameworks 6 Three-Hinged Arches 7 Cables 8 Deflections of Elastic Structures Part 2. Statically Indeterminate Structures 9 The Force Method 10 The Displacement Method 11 Mixed Method 12 Influence Line Method 13 Matrix Stiffness Method Part 3. Special Topics 14 Plastic Behavior of Structures 15 Stability of Elastic Systems 16 Dynamics of Elastic Systems. Free Vibration 17 Dynamics of Elastic Systems. Forced Vibration 18 Special Topics of Structural Dynamics 19 Nonlinear Structural Analysis 20 Conclusion. Once More about Modeling of Structures 21 Fundamental Developments in the History of Structural Mechanics Appendix
PrefaceIntroductionPart 1. Statically Determinate Structures1Kinematical Analysis of Structures 2The Simplest Beams. Theory of Influence Lines 3Multispan Hinged Beams and Frames4Plane Trusses5Space Frameworks6Three-Hinged Arches7Cables8Deflections of Elastic StructuresPart 2. Statically Indeterminate Structures9The Force Method10The Displacement Method11Mixed Method12Influence Line Method 13Matrix Stiffness MethodPart 3. Special Topics 14Plastic Behavior of Structures15Stability of Elastic Systems 16Dynamics of Elastic Systems. Free Vibration17Dynamics of Elastic Systems. Forced Vibration18Special Topics of Structural Dynamics19Nonlinear Structural Analysis20Conclusion. Once More about Modeling of Structures21Fundamental Developments in the History of Structural MechanicsAppendix
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