Author: Xiong Dan'an
Publisher:
Publish Date: 2005-01-01
Features: This volume comprehensively and detailedly explains the entire process of reinforced concrete multi-story frame structure design, a common structural design topic encountered by students in architectural engineering programs during their graduation projects. It covers structural plane layout, selection of member section sizes, internal force calculations and load effect combinations for frames, design of isolated column footings and strip footings, as well as seismic design of frame structures. The design process is demonstrated in full through examples, making it highly practical and operational. [Target Audience] Suitable for students at different levels of undergraduate and associate degree programs, as well as civil engineering technicians, who may find it instructive. [Table of Contents] Preface to the Second Volume 1 Structural Plane Layout and Structural Calculation Diagram 1.1 Structural Plane Layout Scheme 1.1.1 Cast-in-place Floor Slab Scheme 1.1.2 Prefabricated Floor Slab Scheme 1.1.3 Structural Layout Scheme in the Example 1.2 Structural Plane Layout Diagram and Beam Construction Diagram Using Flat Method 1.2.1 Numbering of Structural Members 1.2.2 Introduction to Flat Method Construction Diagram 1.2.3 Plane Notation Method 1.2.4 Section Notation Method 1.3 Material Selection for Concrete Structural Members 1.3.1 Selection of Steel Reinforcement 1.3.2 Selection of Concrete Strength Grade 1.4 Selection of Member Section Sizes 1.4.1 Beam Section Sizes 1.4.2 Frame Column Section Sizes 1.4.3 Thickness of Cast-in-place Slab 1.4.4 Determination of Foundation Top Surface Height 1.4.5 Member Section Sizes and Material Selection in the Example 1.5 Calculation Diagram of Frame Structure 1.5.1 Dimensions, Connections, and Geometric Characteristics of Members 1.5.2 Vertical Loads 1.5.3 Horizontal Wind Load and Horizontal Seismic Action 1.5.4 Load Calculation in the Example 2 Internal Force Calculation and Load Effect Combination and Story Drift Check for Frame Structures 2.1 Internal Force Calculation of Floor Slab and Floor Beams (Non-Frame Beams) 2.1.1 One-way Slab Rib Well Beam Floor Slab 2.1.2 Well Beam Floor Slab 2.1.3 Floor Slab and Floor Beam Calculation in the Example 2.2 Internal Force Calculation of Frame under Vertical Load 2.2.1 Calculation Method 2.2.2 Calculation in the Example 2.3 Internal Force Calculation of Frame under Wind Load 2.3.1 Calculation Method and Steps 2.3.2 Calculation in the Example 2.4 Load Effect Combination of Frame (Non-Seismic Combination) 2.4.1 Combination Formula 2.4.2 Internal Force Combination Values at Control Sections 2.4.3 Load Effect Combination in the Example 2.5 Frame Calculation under Horizontal Seismic Action 2.5.1 Calculation Principles 2.5.2 Calculation of Horizontal Seismic Action 2.5.3 Internal Force Calculation of Frame under Horizontal Seismic Action 2.5.4 Internal Forces Produced by Dead Load Representative Values 2.5.5 Basic Combination of Seismic Action Effects and Other Load Effects 2.5.6 Seismic Action Calculation and Combination in the Example 2.6 Story Drift Check for Frame Structures 2.6.1 Story Drift Check under Wind Load in the Example 2.6.2 Elastic Story Drift Check for Frame under Horizontal Seismic Action in the Example 3 Reinforcement Design for Frame Structures 3.1 Reinforcement Design and Calculation for Frame Beams 3.1.1 Flexural Capacity of Positive Section 3.1.2 Shear Capacity of Oblique Section 3.2 Reinforcement Calculation for Frame Columns 3.2.1 Compressive Capacity of Positive Section for Frame Columns 3.2.2 Shear Capacity of Oblique Section for Frame Columns 3.3 Frame Beam-Column Joint Design 3.3.1 Joint Core Areas for Seismic Intensity Levels I and II 3.3.2 Reinforcement Requirements for Joint Core Areas 3.3.3 Anchorage and Splicing of Longitudinal Reinforcement in Joint Areas 3.4 Reinforcement Calculation for Frame in the Example 3.4.1 Frame Beam Reinforcement 3.4.2 Frame Column Reinforcement 4 Design of Frame Structure Footings 4.1 Isolated Column Footings 4.1.1 Construction Requirements for Isolated Footings 4.1.2 Determination of Foundation Slab Dimensions 4.1.3 Check of Punching Shear Capacity of Footings 4.1.4 Reinforcement of Foundation Slab 4.1.5 Anchorage of Foundation Bars 4.2 Strip Footings under Columns 4.2.1 Calculation of Foundation Beams 4.2.2 Dimension Requirements for Strip Footings 4.2.3 Reinforcement Details 4.3 Seismic Design of Foundations and Footings 4.3.1 Basic Requirements 4.3.2 Natural Foundations and Footings 4.4 Design of Footings for Frame in the Example 4.4.1 Design Data 4.4.2 Scheme One: Design Based on Isolated Footings 4.4.3 Scheme Two: Design Based on Strip Footings 5 Graduation Project Drawings 5.1 Architectural Drawings 5.1.1 First Floor Architectural Plan 5.1.2 Second Floor and Standard Floor Plans 5.1.3 Roof Plan 5.1.4 Elevations 5.2 Structural Drawings Appendix References 【Civil Engineering Graduation Project Series】 Other Volumes in the Series: Design of Mixed-Structure Buildings [Related Books] Guide to Building Structure Graduation Project High-rise Building Structure Construction Data Collection Doubts and Engineering Examples in Multi-Story and High-rise Reinforced Concrete Structure Design Solutions and Examples for Difficult Problems in Multi-Story and High-rise Reinforced Concrete Structure Design Structural Analysis and Design Software Series Tutorial—ETABS Chinese Version User Manual (Includes CD-ROM) Steel Structure Theory Building Construction Structure Concrete Structure Design Code Examples Reinforced Concrete Structure Design High-rise Building Transfer Floor Structure Design and Construction
Reinforced Concrete Frame Structure Design and Examples
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