Description

Book Synopsis


Table of Contents

Part I Fundamentals of soil mechanics

1 Classification and Physical Properties of Soils

Learning outcomes

Agricultural and engineering soil

Origin of soil

Clay soils

Field identification of soils

Laboratory classification of soils

Activity of a clay

Soil classification and description

Soil properties

Exercises

2 Permeability and Flow of Water in Soils

Learning outcomes

Subsurface water

Flow of water through soils

Darcy’s law of saturated flow

Coefficient of permeability, k

Determination of permeability in the laboratory

Determination of permeability in the field

Approximation of coefficient of permeability

General differential equation of flow

Potential and stream functions

Flow nets

Critical flow conditions

Design of soil filters

Capillarity and unsaturated soils

Earth dams

Seepage through non-uniform soil deposits

Exercises

3 Total and Effective Stress

Learning outcomes

State of stress in a soil mass

Total stress

Pore Pressure

Effective stress

Stresses induced by applied loads

Exercises

4 Shear Strength of Soils

Learning outcomes

Elastic stresses and strains

Friction

Complex stress

The Mohr circle diagram

Cohesion

Coulomb’s law of soil shear strength

Modified Coulomb’s law

The Mohr–Coulomb yield theory

Determination of the shear strength parameters

Determination of the shear strength parameters from triaxial testing

The pore pressure coefficients A and B

The triaxial extension test

Behaviour of soils under shear

Operative strengths of soils

The critical state

Sensitivity of clays

Residual strength of soil

Exercises

Part II Geotechnical codes and standards and site investigation

5 stress paths and critical state

Stress paths in two-dimensional space

Stress paths in three-dimensional space

Isotropic consolidation

Stress paths in the triaxial apparatus

Exercises

6 Eurocode 7

Introduction to the Structural Eurocodes

Introduction to Eurocode 7

Using Eurocode 7: basis of geotechnical design

Geotechnical design by calculation

Ultimate limit states

The EQU limit state

The GEO limit state and Design Approaches

Serviceability limit states

Geotechnical design report

7 Site Investigation

EN 1997-2:2007 – Ground investigation and testing

Planning of ground investigations

Site exploration methods

Soil and rock sampling

Groundwater measurements

Field tests in soil and rock

Geotechnical reports

Part III Advanced soil mechanics and applications

8 Lateral Earth Pressure

Learning outcomes

Earth pressure at rest

Active and passive earth pressure

Rankine’s theory: granular soils, active earth pressure

Rankine’s theory: granular soils, passive earth pressure

Rankine’s theory: cohesive soils

Coulomb’s wedge theory: active earth pressure

Coulomb’s wedge theory: passive earth pressure

Surcharges

Choice of method for determination of active pressure

Backfill material

Influence of wall yield on design

Design parameters for different soil types

Exercises

9 Retaining Structures

Learning outcomes

Main types of earth retaining structures

Gravity walls

Embedded walls

Failure modes of earth retaining structures

Design of gravity retaining walls

Design of sheet pile walls

Braced excavations

Reinforced soil

Soil nailing

Exercises

10 Bearing Capacity and Shallow Foundations

Learning outcomes

Bearing capacity terms

Types of foundation

Ultimate bearing capacity of a foundation

Determination of the safe bearing capacity

The effect of groundwater on bearing capacity

Developments in bearing capacity equations

Designing spread foundations to Eurocode 7

Non-homogeneous soil conditions

Estimates of bearing capacity from in situ testing

Exercises

11 Pile Foundations

Learning outcomes

Introduction

Classification of piles

Method of installation

Pile load testing

Determination of the bearing capacity of a pile

Designing pile foundations to Eurocode 7

Pile groups

Exercises

12 Foundation Settlement and soil compression

Learning outcomes

Settlement of a foundation

Immediate settlement

Consolidation settlement

Application of consolidation test results

General consolidation

Eurocode 7 serviceability limit state

Isotropic consolidation

Two-dimensional stress paths

Exercises

13 Rate of Foundation Settlement

Learning outcomes

Analogy of consolidation settlement

Distribution of the initial excess pore pressure, ui

Terzaghi’s theory of consolidation

Average degree of consolidation

Drainage path length

Determination of the coefficient of consolidation, cv, from the consolidation test

Determination of the permeability coefficient from the consolidation test

Determination of the consolidation coefficient from the triaxial test

The model law of consolidation

Consolidation during construction

Consolidation by drainage in two and three dimensions

Numerical determination of consolidation rates

Construction pore pressures in an earth dam

Numerical solutions for two- and three-dimensional consolidation

Sand drains

Exercises

14 Stability of Slopes

Learning outcomes

Planar failures

Rotational failures

Slope stability design charts

Wedge failure

Slope stability analysis to Eurocode 7

Exercises

15 Compaction and Soil Mechanics Aspects of Highway Design

Learning outcomes

Field compaction of soils

Laboratory compaction of soils

Specification of the field compacted density

Field measurement tests

Highway design

Exercises

16 An introduction to geomechanical modelling

Learning outcomes

Constitutive models and their use in geotechnical engineering

Micro and macro models

Elastic models: linear, on-linear, isotropic and anisotropic

Applications and limitations of elastic models

Introduction to plasticity theory

Elasto-plastic models

Applications of elasto-plastic models

Examples

References

Index

Smiths Elements of Soil Mechanics

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    A Paperback / softback by Ian Smith

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      View other formats and editions of Smiths Elements of Soil Mechanics by Ian Smith

      Publisher: John Wiley and Sons Ltd
      Publication Date: 23/09/2021
      ISBN13: 9781119750390, 978-1119750390
      ISBN10: 1119750393

      Description

      Book Synopsis


      Table of Contents

      Part I Fundamentals of soil mechanics

      1 Classification and Physical Properties of Soils

      Learning outcomes

      Agricultural and engineering soil

      Origin of soil

      Clay soils

      Field identification of soils

      Laboratory classification of soils

      Activity of a clay

      Soil classification and description

      Soil properties

      Exercises

      2 Permeability and Flow of Water in Soils

      Learning outcomes

      Subsurface water

      Flow of water through soils

      Darcy’s law of saturated flow

      Coefficient of permeability, k

      Determination of permeability in the laboratory

      Determination of permeability in the field

      Approximation of coefficient of permeability

      General differential equation of flow

      Potential and stream functions

      Flow nets

      Critical flow conditions

      Design of soil filters

      Capillarity and unsaturated soils

      Earth dams

      Seepage through non-uniform soil deposits

      Exercises

      3 Total and Effective Stress

      Learning outcomes

      State of stress in a soil mass

      Total stress

      Pore Pressure

      Effective stress

      Stresses induced by applied loads

      Exercises

      4 Shear Strength of Soils

      Learning outcomes

      Elastic stresses and strains

      Friction

      Complex stress

      The Mohr circle diagram

      Cohesion

      Coulomb’s law of soil shear strength

      Modified Coulomb’s law

      The Mohr–Coulomb yield theory

      Determination of the shear strength parameters

      Determination of the shear strength parameters from triaxial testing

      The pore pressure coefficients A and B

      The triaxial extension test

      Behaviour of soils under shear

      Operative strengths of soils

      The critical state

      Sensitivity of clays

      Residual strength of soil

      Exercises

      Part II Geotechnical codes and standards and site investigation

      5 stress paths and critical state

      Stress paths in two-dimensional space

      Stress paths in three-dimensional space

      Isotropic consolidation

      Stress paths in the triaxial apparatus

      Exercises

      6 Eurocode 7

      Introduction to the Structural Eurocodes

      Introduction to Eurocode 7

      Using Eurocode 7: basis of geotechnical design

      Geotechnical design by calculation

      Ultimate limit states

      The EQU limit state

      The GEO limit state and Design Approaches

      Serviceability limit states

      Geotechnical design report

      7 Site Investigation

      EN 1997-2:2007 – Ground investigation and testing

      Planning of ground investigations

      Site exploration methods

      Soil and rock sampling

      Groundwater measurements

      Field tests in soil and rock

      Geotechnical reports

      Part III Advanced soil mechanics and applications

      8 Lateral Earth Pressure

      Learning outcomes

      Earth pressure at rest

      Active and passive earth pressure

      Rankine’s theory: granular soils, active earth pressure

      Rankine’s theory: granular soils, passive earth pressure

      Rankine’s theory: cohesive soils

      Coulomb’s wedge theory: active earth pressure

      Coulomb’s wedge theory: passive earth pressure

      Surcharges

      Choice of method for determination of active pressure

      Backfill material

      Influence of wall yield on design

      Design parameters for different soil types

      Exercises

      9 Retaining Structures

      Learning outcomes

      Main types of earth retaining structures

      Gravity walls

      Embedded walls

      Failure modes of earth retaining structures

      Design of gravity retaining walls

      Design of sheet pile walls

      Braced excavations

      Reinforced soil

      Soil nailing

      Exercises

      10 Bearing Capacity and Shallow Foundations

      Learning outcomes

      Bearing capacity terms

      Types of foundation

      Ultimate bearing capacity of a foundation

      Determination of the safe bearing capacity

      The effect of groundwater on bearing capacity

      Developments in bearing capacity equations

      Designing spread foundations to Eurocode 7

      Non-homogeneous soil conditions

      Estimates of bearing capacity from in situ testing

      Exercises

      11 Pile Foundations

      Learning outcomes

      Introduction

      Classification of piles

      Method of installation

      Pile load testing

      Determination of the bearing capacity of a pile

      Designing pile foundations to Eurocode 7

      Pile groups

      Exercises

      12 Foundation Settlement and soil compression

      Learning outcomes

      Settlement of a foundation

      Immediate settlement

      Consolidation settlement

      Application of consolidation test results

      General consolidation

      Eurocode 7 serviceability limit state

      Isotropic consolidation

      Two-dimensional stress paths

      Exercises

      13 Rate of Foundation Settlement

      Learning outcomes

      Analogy of consolidation settlement

      Distribution of the initial excess pore pressure, ui

      Terzaghi’s theory of consolidation

      Average degree of consolidation

      Drainage path length

      Determination of the coefficient of consolidation, cv, from the consolidation test

      Determination of the permeability coefficient from the consolidation test

      Determination of the consolidation coefficient from the triaxial test

      The model law of consolidation

      Consolidation during construction

      Consolidation by drainage in two and three dimensions

      Numerical determination of consolidation rates

      Construction pore pressures in an earth dam

      Numerical solutions for two- and three-dimensional consolidation

      Sand drains

      Exercises

      14 Stability of Slopes

      Learning outcomes

      Planar failures

      Rotational failures

      Slope stability design charts

      Wedge failure

      Slope stability analysis to Eurocode 7

      Exercises

      15 Compaction and Soil Mechanics Aspects of Highway Design

      Learning outcomes

      Field compaction of soils

      Laboratory compaction of soils

      Specification of the field compacted density

      Field measurement tests

      Highway design

      Exercises

      16 An introduction to geomechanical modelling

      Learning outcomes

      Constitutive models and their use in geotechnical engineering

      Micro and macro models

      Elastic models: linear, on-linear, isotropic and anisotropic

      Applications and limitations of elastic models

      Introduction to plasticity theory

      Elasto-plastic models

      Applications of elasto-plastic models

      Examples

      References

      Index

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