The Foundation Engineering Handbook

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$179.95
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ISBN 9780849311598
Cat# 1159
 

Features

  • Provides a one-stop resource that includes the most recent developments in theoretical and applied foundation engineering
  • Incorporates state-of-the-art design, analysis, and engineering techniques, including in situ testing, ground stabilization methods, and ground deformation modeling
  • Presents reliability-based design and LRFD concepts, building a familiarity with limit state design in foundation engineering
  • Includes a multitude of examples and more than 415 illustrations
  • Summary

    Great strides have been made in the art of foundation design during the last two decades. In situ testing, site improvement techniques, the use of geogrids in the design of retaining walls, modified ACI codes, and ground deformation modeling using finite elements are but a few of the developments that have significantly advanced foundation engineering in recent years. What has been lacking, however, is a comprehensive reference for foundation engineers that incorporates these state-of-the-art concepts and techniques.

    The Foundation Engineering Handbook fills that void. It presents both classical and state-of-the-art design and analysis techniques for earthen structures, and covers basic soil mechanics and soil and groundwater modeling concepts along with the latest research results. It addresses isolated and shallow footings, retaining structures, and modern methods of pile construction monitoring, as well as stability analysis and ground improvement methods. The handbook also covers reliability-based design and LRFD (Load Resistance Factor Design)-concepts not addressed in most foundation engineering texts.

    Easy-to-follow numerical design examples illustrate each technique. Along with its unique, comprehensive coverage, the clear, concise discussions and logical organization of The Foundation Engineering Handbook make it the one quick reference every practitioner and student in the field needs.

    Table of Contents

    REVIEW OF SOIL MECHANICS CONCEPTS AND ANALYTICAL TECHNIQUES; Manjriker Gunaratne
    Introduction
    Soil Classification
    Effective Stress Concept
    Strength of Soils
    Compressibility and Settlement
    Soil Densities and Compaction
    Finite Element Concepts Used in Modeling of Earthen Structures
    Common Methods of Modeling the Yielding Behavior of Soils
    References

    IN SITU SOIL TESTING; Gray Mullins
    Introduction to Subsurface Exploration
    Need for In Situ Testing
    Geophysical Testing Methods
    Physical Sampling and Penetration Tests
    Cone Penetration Test
    The Field Vane Shear Test
    The Pressuremeter Test
    The Dilatometer Test
    California Bearing Ratio Test
    Borehole Shear Test
    References

    SPREAD FOOTINGS: ANALYSIS AND DESIGN; Manjriker Gunaratne
    Design Criteria
    Evaluation of Bearing Capacity
    Settlement Analysis
    Load and Resistance Factor Design Criteria
    Design of Footings to Withstand Vibrations
    Additional Examples
    References

    GEOTECHNICAL DESIGN OF COMBINED SPREAD FOOTINGS; Manjriker Gunaratne
    Introduction
    Design Criteria
    Conventional Design of Rectangular Combined Footings
    Conventional Design of Mat Footings
    Settlement of Mat Footings
    Design of Flexible Combined Footings
    Structural Matrix Analysis Method for Design of Flexible Combined Footings
    Finite Difference Method of Flexible Mat Footing Design
    Additional Design Examples
    References

    STRUCTURAL DESIGN OF FOUNDATIONS; Panchy Arumugasamy
    Introduction
    Types of Foundations
    Soil Pressure Distribution under Footings
    Determination of the Size of Footing
    Strip or Wall Footings
    Combined Footings
    Pile Foundations
    Design of Grade Beams
    Structural Design of Drilled Shafts
    References

    DESIGN OF DRIVEN PILES AND PILE GROUPS; Manjriker Gunaratne
    Introduction
    Design of Pile Foundations
    Estimation of Static Pile Capacity of a Single Pile
    Pile Load Transfer
    Time Variation of Pile Capacity (Pile Setup)
    Computation of Pile Settlement
    Pile Groups
    Downdrag (Negative Skin Friction)
    Load and Resistance Factor Design Criteria
    Static Capacity of Piles on Rock
    Pullout Capacity of Driven Piles
    Screw Piles
    Pile Hammers
    Additional Examples
    References

    DESIGN OF DRILLED SHAFTS; Gray Mullins
    Introduction
    Construction Considerations
    Design Capacity of Drilled Shafts
    Use of Triaxial or SPT Data in Clay
    Designing Drilled Shafts from CPT Data
    Designing from Rock Core Data
    Designing from Load Test Data
    Design of Post Grouted Shafts
    Economy of Load Testing
    Pressure Injected Footings
    Nomenclature
    References

    DESIGN OF LATERALLY LOADED PILES; Manjriker Gunaratne
    Introduction
    Lateral Load Capacity Based on Strength
    Lateral Load Capacity Based on Deflections
    Lateral Load Capacity of Pile Groups
    Load and Resistance Factor Design for Laterally Loaded Piles
    Effect of Pile Jetting on the Lateral Load Capacity
    Effect of Preaugering on the Lateral Load Capacity
    References

    CONSTRUCTION MONITORING AND TESTING METHODS OF DRIVEN PILES; Manjriker Gunaratne
    Introduction
    Construction Techniques Used in Pile Installation
    Verification of Pile Capacity
    Pile Driving Analyzer
    Comparison of Pile Driving Formulae and Wave-Equation Analysis Using the PDA Method
    Static Pile Load Tests
    Load Testing Using the Osterberg Cell
    Rapid Load Test (Statnamic Pile Load Test)
    Lateral Load Testing of Piles
    Finite Element Modeling of Pile Load Tests
    Quality Assurance Test Methods
    Methods of Repairing Pile Foundations
    Use of Piles in Foundation Stabilization
    References

    RETAINING WALLS: ANALYSIS AND DESIGN; Alaa Ashmawy
    Introduction
    Lateral Earth Pressure
    Basic Design Principles
    Gravity Walls
    Cantilever Walls
    MSE Walls
    Sheet Pile and Tie-Back Anchored Walls
    Soil Nail Systems
    Drainage Considerations
    Deformation Analysis
    Performance under Seismic Loads
    Additional Examples
    Glossary
    References

    STABILITY ANALYSIS AND DESIGN OF SLOPES; Manjriker Gunaratne
    Introduction
    Analysis of Finite Slopes with Plane Failures
    Method of Slices
    Slope Stability Analysis Using the Stability Number Method
    Stabilization of Slopes with Piles
    Reinforcement of Slopes with Geotextiles and Geogrids
    Reliability-Based Slope Design
    Slope Instability and Landslides
    Investigation of Slope Failures
    Approximate Three-Dimensional Slope Stability Analysis
    Additional Examples
    References

    METHODS OF SOFT GROUND IMPROVEMENT; Jim Hussin
    Introduction
    Compaction
    Reinforcement
    Fixation
    Other Innovative Soft-Ground Improvements Techniques
    References

    IMPACT OF GROUNDWATER ON THE DESIGN OF EARTHEN STRUCTURES; Manjriker Gunaratne
    Groundwater and Seepage
    Graphical Solution to Groundwater Problems: Flow Nets
    Numerical Modeling of Groundwater Flow
    Analytical Modeling of Groundwater Flow
    Dewatering of Excavations
    Basic Environmental Geotechnology
    Application of Groundwater Modeling Concepts in Environmental Geotechnology
    Design of Filters
    References
    INDEX