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Foundation Vibration Analysis A Strength Of Materials Approach 1st Edition John P Wolf

  • SKU: BELL-2146878
Foundation Vibration Analysis A Strength Of Materials Approach 1st Edition John P Wolf
$ 31.00 $ 45.00 (-31%)

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Foundation Vibration Analysis A Strength Of Materials Approach 1st Edition John P Wolf instant download after payment.

Publisher: Butterworth-Heinemann
File Extension: PDF
File size: 4.07 MB
Pages: 239
Author: John P Wolf, Andrew J. Deeks
ISBN: 075066164X
Language: English
Year: 2004
Edition: 1

Product desciption

Foundation Vibration Analysis A Strength Of Materials Approach 1st Edition John P Wolf by John P Wolf, Andrew J. Deeks 075066164X instant download after payment.

Structural analysis is usually carried out by a strength-of-materials approach that allows complex 3-D structures to be modelled adequately for design needs in a single dimension. However, this approach is not extensively used in geotechnical engineering, partly because 3-D media (soil, rock) are present, but more importantly because until recently the methods necessary to carry out this form of analysis did not exist.In the last ten years efforts at modelling practical problems in foundation analysis using a strength-of-materials approach have developed the concept of the conical bar or beam as a tool. Such cone models can be used to model a foundation in a dynamic soil-structure interaction analysis with a variation of the properties with depth. This book develops this new approach from scratch in a readable and accessible manner. A systematic evaluation for a wide range of actual sites demonstrates sufficient engineering accuracy. A short computer program written in MATLAB and a user-friendly executable program are provided, while practical examples ensure a clear understanding of the topic. *Simplifies complex 3-D analysis of soil-structure interaction.*Applies strength-of-materials approach to geotechnical engineering.*Illustrated with practical examples.*Executable program and MATLAB program for foundation vibration analysis.

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