Foundation Vibration Analysis Using Simple Physical Models

Foundation Vibration Analysis Using Simple Physical Models

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Description

This book provides simple physical models to represent the unbounded soil in time and frequency domain analysis. They do not supplant the more generally applicable rigorous methods, but rather supplement them. The physical models used consists of the following representations: cones based one-dimensional rod theory; lumped-parameter models with frequency-independent springs, dashpots, and masses; and prescribed wave patterns in the horizontal plane. The physical models thus offer a strength-of-materials approach to foundation dynamics.show more

Product details

  • Hardback | 464 pages
  • 175.3 x 231.1 x 20.3mm | 748.44g
  • Pearson Education (US)
  • Prentice Hall
  • Upper Saddle River, United States
  • English
  • 0130107115
  • 9780130107114
  • 1,992,828

Back cover copy

This book provides simple physical models to represent the unbounded soil in time and frequency domain analysis. They do not supplant the more generally applicable rigorous methods, but rather supplement them. The physical models used consists of the following representations: cones based one-dimensional rod theory; lumped-parameter models with frequency-independent springs, dashpots, and masses; and prescribed wave patterns in the horizontal plane. The physical models thus offer a strength-of-materials approach to foundation dynamics.show more

Table of contents

1. Introduction. 2. Foundation on Surface of Homogeneous Soil Halfspace. 3. Foundation on Surface of Soil Layer on Rigid Rock. 4. Embedded Foundation and Pile Foundation. 5. Simple Vertical Dynamic-Greens Function. 6. Seismic Excitation. 7. Dynamic Soil-Structure Interaction. References. Appendix A: Interaction Force-Displacement Relationship and Greens Function of Cone Model. Appendix B: Consistent Lumped-Parameter Model. Appendix C: Recursive Evaluation of Convolution Integral. Appendix D: Dynamic Stiffness of Foundation on or Embedded in Layered Soil Halfspace. Index.show more