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Fundamentals of Structural Engineering

Fundamentals of Structural Engineering
Kataloginformation
Feldname Details
Vorliegende Sprache eng
ISBN 978-1-4614-3261-6
Name Connor, Jerome J.
Faraji, Susan
Name ANZEIGE DER KETTE Faraji, Susan
T I T E L Fundamentals of Structural Engineering
Verlagsort New York, NY
Verlag Springer
Erscheinungsjahr 2013
2013
Umfang Online-Ressource (XXVII, 1143 p. 1211 illus., 30 illus. in color, digital)
Reihe SpringerLink. Bücher
Notiz / Fußnoten Description based upon print version of record
Weiterer Inhalt Fundamentals of Structural Engineering; Preface; Acknowledgements; Contents; Photo Credits; Part I: Statically Determinate Structures; 1: Introduction to Structural Engineering; 1.1 Types of Structures and Structural Components; 1.1.1 Structural Components; 1.1.2 Types of Structures; 1.2 Critical Concerns of Structural Engineering; 1.2.1 Reactions; 1.2.2 Initial Stability; 1.2.3 Loss of Stability Due to Material Failure; 1.2.4 Buckling Failure Mode; 1.2.5 Priorities for Stability; 1.3 Types of Loads; 1.3.1 Source of Loads; 1.3.1.1 Interaction with the Environment; 1.3.1.2 Function. 1.3.1.3 Construction1.3.1.4 Terrorist Loads; 1.3.2 Properties of Loadings; 1.3.3 Gravity Live Loads; 1.3.4 Wind Loading; 1.3.4.1 Wind Pressure Distribution; 1.3.4.2 Wind Velocity; 1.3.4.3 Pressure Profiles; 1.3.4.4 Vortex Shedding Pressure; 1.3.5 Snow Loading; 1.3.6 Earthquake Loading; 1.4 Structural Design Philosophy; 1.5 Basic Analytical Tools of Structural Analysis; 1.5.1 Concept of Equilibrium-Concurrent Force System; 1.5.2 Concept of Equilibrium: Non-concurrent Force System; 1.5.3 Idealized Structure: Free Body Diagrams; 1.5.4 Internal Forces; 1.5.5 Deformations and Displacements. 1.5.6 Structural Behavior Structural Analysis; 1.5.6.1 Study Forces; 1.5.6.2 Study Displacements; 1.5.7 The Importance of Displacements; 1.6 Summary; 1.6.1 Objectives of the Chapter; 1.6.2 Key Issues and Concepts Introduced; 2: Statically Determinate Truss Structures; 2.1 Introduction: Types of Truss Structures; 2.1.1 Structural Idealization; 2.1.2 Historical Background; 2.2 Analysis of Planar Trusses; 2.2.1 Equilibrium Considerations; 2.2.2 Statically Determinate Planar Trusses; 2.2.3 Stability Criterion; 2.2.4 Method of Joints: Planar Trusses; 2.2.5 Method of Sections; 2.2.6 Complex Trusses. 2.3 Computation of Deflections2.3.1 Introduction; 2.3.2 Force-Deformation Relationship; 2.3.3 Deformation-Displacement Relations; 2.3.4 Method of Virtual Forces; 2.4 Influence Lines; 2.5 Analysis of Three-Dimensional Trusses; 2.5.1 Introduction; 2.5.2 Restraining Rigid Body Motion; 2.5.3 Static Determinacy; 2.5.4 Method of Joints for 3-D Trusses; 2.6 Matrix Formulation: Equilibrium Analysis of Statically Determinate 3-D Trusses; 2.6.1 Notation; 2.6.2 Member-Node Incidence; 2.6.3 Force Equilibrium Equations; 2.6.4 Stability; 2.6.5 Matrix Formulation: Computation of Displacements; 2.7 Summary. 2.7.1 Objectives of the Chapter2.7.2 Key Facts and Concepts; Problems; Problem 2.1; Problem 2.2; Problem 2.3; Problem 2.4; Problem 2.5; Problem 2.6; Problem 2.7; Problem 2.8; Problem 2.9; Problem 2.10; Problem 2.11; Problem 2.12; Problem 2.13; Problem 2.14; Problem 2.15; Problem 2.16; Problem 2.17; Problem 2.18; Problem 2.19; Problem 2.20; Problem 2.21; Problem 2.22; Problem 2.23; Problem 2.24; Problem 2.25; Problem 2.26; Problem 2.27; Problem 2.28; Problem 2.29; Problem 2.30; Problem 2.31; Problem 2.32; Problem 2.33; Problem 2.34; Problem 2.35; Problem 2.36; Problem 2.37; Problem 2.38. Problem 2.39
Titelhinweis Buchausg. u.d.T.ISBN: 978-1-461-43261-6
ISBN ISBN 978-1-4614-3262-3
Klassifikation TGB
SCI041000
TEC009070
*74-01
74K10
74S05
74S30
620.1
624.1
TA349-359
Kurzbeschreibung Fundamentals of Structural Engineering provides a balanced, seamless treatment of both classic, analytic methods and contemporary, computer-based techniques for conceptualizing and designing a structure. The book?s principle goal is to foster an intuitive understanding of structural behavior based on problem solving experience for students of civil engineering and architecture who have been exposed to the basic concepts of engineering mechanics and mechanics of materials. Distinct from many undergraduate textbooks, which are focused mainly on either teaching manual analysis methods and applying them to simple, idealized structures or reformulating structural analysis methods in terms of matrix notation, this text instead encourages the student to develop intuition about structural behavior. The authors of this text recognize the notion that engineers reason about behavior using simple models and intuition they acquire through problem solving. The approach adopted in this text develops this type of intuition by presenting extensive, realistic problems and case studies together with computer simulation, which allows rapid exploration of how a structure responds to changes in geometry and physical parameters.
SWB-Titel-Idn 373363451
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-1-4614-3262-3
Internetseite / Link Volltext
Siehe auch Volltext
Siehe auch Cover
Siehe auch Inhaltstext
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