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Deformation and Failure Mechanism of Rock Tunnels under Earthquake Loading
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Deformation and Failure Mechanism of Rock Tunnels under Earthquake Loading

Book Details

Format Hardback or Cased Book
ISBN-10 103250921X
ISBN-13 9781032509211
Publisher Taylor & Francis Ltd
Imprint CRC Press
Country of Manufacture GB
Country of Publication GB
Publication Date Nov 28th, 2023
Print length 344 Pages
Weight 453 grams
Ksh 32,400.00
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This covers seismic performance, deformation and failure mechanisms, good aseismic design, and effective damage assessment and restoration. It gives analytical solutions for longitudinal and transversal seismic deformation, along with performance-based restoration design and aseismic design, and a case study of Japan‘s Tawarayama tunnel.

Seismic damage to rock tunnels from recent earthquakes indicates an urgent need for seismic assessment and aseismic design of underground structures. This book offers a comprehensive account of seismic performance and the response of underground structures under earthquake loading, necessary for adequate assessment and design.

The book presents research methods for the rate-dependent mechanical behavior of rock and for the seismic behavior of underground structures. It describes analytical solutions to investigate the seismic response of tunnels subjected to seismic waves, toward an improved quantitative understanding of the seismic deformation and failure mechanism in both longitudinal and transversal aspects. A performance-based restoration design criterion and aseismic design are also proposed for future tunnel planning.

  • Includes a detailed case study for the seismic performance assessment of rock tunnels under earthquake loading
  • Explores the relationship between seismic damage to underground structures and ground deformation
  • Covers a range of issues from mechanisms, analysis, assessment and design of both new tunnels and restoration projects

The book is ideal for earthquake engineers and researchers, and will also be of interest to contractors, clients, researchers, lecturers, and advanced students working on tunnel engineering.


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