Geotechnical Earthquake Engineering, Second Edition

Nonfiction, Science & Nature, Technology, Engineering, Civil
Cover of the book Geotechnical Earthquake Engineering, Second Edition by Robert W. Day, McGraw-Hill Education
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Author: Robert W. Day ISBN: 9780071792394
Publisher: McGraw-Hill Education Publication: August 20, 2012
Imprint: McGraw-Hill Education Language: English
Author: Robert W. Day
ISBN: 9780071792394
Publisher: McGraw-Hill Education
Publication: August 20, 2012
Imprint: McGraw-Hill Education
Language: English

The latest methods for designing seismically sound structures

Fully updated for the 2012 International Building Code, Geotechnical Earthquake Engineering Handbook, Second Edition discusses basic earthquake principles, common earthquake effects, and typical structural damage caused by seismic shaking.

Earthquake computations for conditions commonly encountered by design engineers, such as liquefaction, settlement, bearing capacity, and slope stability, are included. Site improvement methods that can be used to mitigate the effects of earthquakes on structures are also described in this practical, comprehensive guide.

Coverage includes:

  • Basic earthquake principles
  • Common earthquake effects
  • Earthquake structural damage
  • Site investigation for geotechnical earthquake engineering
  • Liquefaction
  • Earthquake-induced settlement
  • Bearing capacity analyses for earthquakes
  • Slope stability analyses for earthquakes
  • Retaining wall analyses for earthquakes
  • Other geotechnical earthquake engineering analyses
  • Grading and other soil improvement methods
  • Foundation alternatives to mitigate earthquake effects
  • Earthquake provisions in building codes
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The latest methods for designing seismically sound structures

Fully updated for the 2012 International Building Code, Geotechnical Earthquake Engineering Handbook, Second Edition discusses basic earthquake principles, common earthquake effects, and typical structural damage caused by seismic shaking.

Earthquake computations for conditions commonly encountered by design engineers, such as liquefaction, settlement, bearing capacity, and slope stability, are included. Site improvement methods that can be used to mitigate the effects of earthquakes on structures are also described in this practical, comprehensive guide.

Coverage includes:

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