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Strength Design for Reinforced-Concrete Hydraulic Structures is written in sufficient detail to not only provide the designer with design procedures, but also to present examples of their application. A review of general detailing requirements, as well as strength and serviceability requirements, create a strong understanding of the strength-design method. Latter chapters feature examples that demonstrate load-factor application, the design of members subjected to combined flexural and axial loads, the design of members subjected to biaxial bending, and the design for shear strength, including provisions for both special straight and curved members.
This manual provides guidance for designing reinforced concrete hydraulic structures by the strength-design method. Plain concrete and prestressed concrete are not covered in this manual.
Introductory guidance for civil and structural engineers interested in strength and serviceability requirements for reinforced concrete hydraulic structures. Here is what is discussed: 1. GENERAL 2. SERVICEABILITY LIMIT STATES 3. STRENGTH LIMIT STATES. 4. STRUCTURAL STABILITY ANALYSIS 5. CRITICAL AND NORMAL STRUCTURES 6. HYDRAULIC STRUCTURES SUPPORTING VEHICLES 7. LOADS.
Introductory technical guidance for civil and structural engineers interested in seismic design of concrete hydraulic structures. Here is what is discussed: 1. DESIGN EARTHQUAKES 2. PERFORMANCE LEVELS 3. PERFORMANCE GOALS 4. DESIGN REQUIREMENTS 5. PERFORMANCE EVALUATION 6. MANDATORY REQUIREMENTS.
Introductory technical guidance for civil and structural engineers and construction managers interested in design and construction of reinforced concrete hydraulic structures. Here is what is discussed: 1. DETAILS OF REINFORCEMENT 2. STRENGTH AND SERVICEABILITY REQUIREMENTS 3. REQUIRED STRENGTH.