07/06/2026
1.Design Guide For Pile Cap
Table of Contents:
Introduction Loads Pile Cap Behavior Dimensioning and Detailing Pile Caps Pile Cap Design for Gravity Loads Pile Cap Design for Lateral Loads Seismic Design of Pile Caps Design Examples Tabulated Designs Selected References Notation Tables Appendix A - Derivations and Proofs Appendix B - Column-to-Pile Cap Connections Appendix C - Pile-to-Pile Cap Connections This design guide has been developed to provide the practicing engineer with a detailed overview of pile cap design, detailing, and analysis methodologies that represent the current state of practice in the industry. The contains comprehensive technical content and practical design examples utilizing approximately 30 different, yet commonly used, pile cap configurations. Tabulated designs are also provided for all aforementioned pile cap configurations and a wide range of vertical loading, lateral loading, and overturning effects. In order to better understand the behavior of deep pile caps, a finite element study was performed and recommendations obtained from that study are presented here.
2. Design Guide for Reinforced concrete columns
Contents include:
Introduction Materials General Requirements for Strength Design Preliminary Column Sizing Determining and Detailing the Required Reinforcement Examples References Notations Appendix A – Reinforcing Bar Data Appendix B – Charts to Determine Preliminary Column Size The objective of this guide is to provide comprehensive information on the design and detailing of reinforced concrete columns in buildings assigned to any Seismic Design Category. The design and detailing requirements in ACI 318-14 are clearly summarized in tables and figures for quick reference. Numerous design aids and flow charts are provided that can be used to determine the size of the cross-section and the required amounts of longitudinal and transverse reinforcement for members subjected to axial compression or combined flexure and axial compression. Slenderness effects are also covered, including methods on how to size a column so that such effects can be neglected. A collection of design strength interaction diagrams are given in an appendix that covers tied, rectangular columns ranging in size from 12 to 48 in.; tied and spiral circular columns ranging in diameter from 12 to 48 in.; Grade 60 and Grade 80 longitudinal reinforcement; concrete compressive strengths from 4,000 psi to 14,000 psi; and longitudinal reinforcement ratios from 1% to less than 2.5%. Numerous worked-out examples illustrate the proper application of the code provisions and demonstrate the use of the design aids.
3. Design Guide on the ACI 318 Building Code Requirements for structural concrete
The purpose of this Design Guide is to assist in the proper application of the design and detailing requirements. The many design aids and worked-out examples are provided to make designing and detailing reinforced concrete members simpler and faster. The goal is to acquire an understanding of the code requirements and to apply them properly and efficiently. In addition to structural engineers, this Design Guide is a valuable resource for educators, students, individuals studying for licensing exams, and building officials. Based on the ACI 318-19 code With over 990 pages and 140 worked-out examples, this unique Design Guide assists in the proper application of the provisions in the 2019 edition of Building Code Requirements for Structural Concrete (ACI 318-19) for cast-in-place concrete buildings with nonprestressed reinforcement.
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