Autor: Shi, ZihaiWatanabe, ShizuoOgawa, KenichiKubo, Hajime
Wydawca: Elsevier
Dostępność: 3-6 tygodni
Cena: 697,20 zł
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ISBN13: |
9780128115527 |
Autor: |
Shi, ZihaiWatanabe, ShizuoOgawa, KenichiKubo, Hajime |
Oprawa: |
Paperback |
Rok Wydania: |
2017-08-24 |
Tematy: |
TNC |
Structural Resilience in Sewer Reconstruction: From Theory to Practice provides engineers with a balanced mixture of theory and practice. Divided into three parts, structural resilience is introduced, along with different methods and theories that are needed to assess sewerage networks. The authors begin with a general overview of resilience and lessons learned, then present a comprehensive review of resilience theories in key fields of study. The book also introduces major analysis techniques and computational methods for resilience assessment, also highlighting sewer reconstruction projects carried out in Tokyo, including the reconstruction and development process for construction methods, renovation materials and technical inventions.
The structural resilience considerations incorporated in various stages of development are discussed in detail. Computational examples for assessing structural resilience in the renovated sewer system in Tokyo are also shown, with final chapters summarizing structural resilience theories and areas for future study.
1. Introduction
2. Review of Resilience Theories and Practices in Key Fields of Study
3. Major Analysis Techniques, Resilience Models and Computational Methods in Resilience Analysis
4. Functional Degradations in Tokyo’s Ageing Sewerage System and Sewer Reconstruction Plan with Enhanced Structural Resilience
5. Developments of Sewer and Manhole Renovation Methods
6. Enhancing Structural Resilience of the Renovated Sewer System by Technical Developments
7. Structural Analysis Theories in Assessing Fracture Behaviours of Renovated Ageing Sewers and Manholes
8. Concepts and Theories of Limit State Design for Sewer Renovation
9. Structural Resilience Assessment for Renovated Sewer Systems
10. Structural Resilience in Progress and Future Studies
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