|
ENGINEERING
AND DESIGN
Strength Design
for Reinforced-Concrete
Hydraulic Structures
CHAPTER
1. INTRODUCTION
Purpose
Applicability
References
Background
General Requirements
Scope
Computer Programs
Recission
CHAPTER
2. DETAILS OF REINFORCEMENT
General
Quality
Anchorage, Bar Development, and Splices
Hooks and Bends
Bar Spacing
Concrete Protection for Reinforcement
Splicing
Temperature and Shrinkage Reinforcement
CHAPTER
3. STRENGTH AND SERVICEABILITY REQUIREMENTS
General
Stability Analysis
Required Strength
Design Strength of Reinforcement
Maximum Tension Reinforcement
Control of Deflections and Cracking
Minimum Thickness of Walls
CHAPTER
4. FLEXURAL AND AXIAL LOADS
Design Assumptions and General
Requirements
Flexural and Compressive
Capacity - Tension
Reinforcement Only
Flexural and Compressive
Capacity - Tension and Compression
Reinforcement
Flexural and Tensile Capacity
Biaxial Bending and Axial Load
CHAPTER
5. SHEAR
Shear Strength
Shear Strength for Special Straight
Members
Shear Strength for Curved Members
Empirical Approach
APPENDICES
Appendix A Notation A-1
Appendix B Derivation of Equations for B-1
Flexural and Axial Loads
Appendix C Investigation Examples C-1
Appendix D Design Examples D-1
Appendix E Interaction Diagram E-1
Appendix F Axial Load with Biaxial Bending - F-1
Example
|