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  • © 2007

Probabilistic Methods in Geotechnical Engineering

Part of the book series: CISM International Centre for Mechanical Sciences (CISM, volume 491)

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Table of contents (14 chapters)

  1. Front Matter

    Pages i-vii
  2. Review of Probability Theory, Random Variables, and Random Fields

    • Gordon A. Fenton, D. V. Griffiths
    Pages 1-69
  3. Application of the response surface method

    • Wojciech Pula, Jerzy Bauer
    Pages 147-168
  4. Reliability of Laterally Loaded Rigid Piles

    • Wojciech Pula
    Pages 169-183
  5. Case history: Pile Foundations of a Large Gantry Crane

    • Wojciech Pula, Jaroslaw Rybak
    Pages 185-199
  6. Random Field Generation and the Local Average Subdivision Method

    • Gordon A. Fenton, D.V. Griffiths
    Pages 201-223
  7. The Random Finite Element Method (RFEM) in Steady Seepage Analysis

    • D.V. Griffiths, Gordon A. Fentont
    Pages 225-241
  8. The Random Finite Element Method (RFEM) in Settlement Analyses

    • Gordon A. Fenton, D.V. Griffiths, W. Cavers
    Pages 243-270
  9. The Random Finite Element Method (RFEM) in Mine Pillar Stability Analysis

    • D.V. Griffiths, Gordon A. Fenton, Carisa B. Lemons
    Pages 271-294
  10. The Random Finite Element Method (RFEM) in Bearing Capacity Analyses

    • Gordon A. Fenton, D.V. Griffiths
    Pages 295-315
  11. The Random Finite Element Method (RFEM) in Slope Stability Analysis

    • D.V. Griffiths, Gordon A. Fenton
    Pages 317-346

About this book

Soils and rocks are among the most variable of all engineering materials, and as such are highly amenable to a probabilistic treatment. The application of statistical and probabilistic concepts to geotechnical analysis is a rapidly growing area of interest for both academics and practitioners. The book is therefore aimed at students, researchers, and practitioners of geotechnical engineering who wish to keep abreast of developments in this evolving field of study. The course content and will assume no more that an introductory understanding of probability and statistics on the part of the course participants.

The main objective is to present a state-of-the-art training on probabilistic techniques applied to geotechnical engineering in relation to both theory and practice.

Including:

(a) discussion of potential benefits of probabilistic approaches as opposed to the classical “Factor of Safety” methods, to review sources of uncertainty in geotechnical analysis and to introduce methods of LRFD and reliability concepts in Eurocode 7,

(b) review of relevant statistical theories needed to develop the methodologies and interpret the results of probabilistic analysis,

(c) examples of established probabilistic methods of analysis in geotechnical engineering, such as the First Order Second Moment (FOSM) method, the Point Estimate Method (PEM), the First and Second Order Reliability Methods (FORM SORM) and Random Set (RS) theory,

(d) description of numerical methods of probabilistic analysis based on the finite element method, such as the Stochastic Finite Element Method (SFEM) and recent developments on the Random Finite Element Method (RFEM),

(e) practical examples and case histories of probabilistic applications in geotechnical engineering.

Editors and Affiliations

  • Colorado School of Mines, Golden, USA

    D. V. Griffiths

  • Dalhousie University, Halifax, Canada

    Gordon. A. Fenton

Bibliographic Information

Buy it now

Buying options

eBook USD 129.00
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 169.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access