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Advances in Indian Earthquake Engine...
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Sharma, M. L.
Advances in Indian Earthquake Engineering and Seismology = Contributions in Honour of Jai Krishna /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Advances in Indian Earthquake Engineering and Seismology/ edited by M. L. Sharma, Manish Shrikhande, H. R. Wason.
Reminder of title:
Contributions in Honour of Jai Krishna /
other author:
Sharma, M. L.
Description:
XL, 431 p. 210 illus., 23 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Natural disasters. -
Online resource:
https://doi.org/10.1007/978-3-319-76855-7
ISBN:
9783319768557
Advances in Indian Earthquake Engineering and Seismology = Contributions in Honour of Jai Krishna /
Advances in Indian Earthquake Engineering and Seismology
Contributions in Honour of Jai Krishna /[electronic resource] :edited by M. L. Sharma, Manish Shrikhande, H. R. Wason. - 1st ed. 2018. - XL, 431 p. 210 illus., 23 illus. in color.online resource.
Part I: Engineering Seismology -- Chapter1. Engineering Seismology -- Chapter2. Developments in Seismological Instrumentation -- Chapter3. Strong Motion Instrumentation Programme in India. Chapter4. Strong Motion Studies -- Chapter5. New Regression Relations for Magnitude Conversion -- Chapter6. Tsunami Hazard Assessment -- Part 2: Geotechnical Earthquake Engineering -- Chapter7. Recent Developments in Liquefaction, stability analysis of retaining structures, shallow foundations and pile foundations -- Chapter8. Seismic Analysis and Design of Retaining Walls and Shallow Foundations -- Chapter9. Ground Improvement for Mitigating Liquefaction Hazard -- Chapter10. Recent Advances in Soil Dynamics -- Part 3: Structural Dynamics -- Chapter11. Developments in Earthquake Resistant Design of Bridges -- Chapter12. Developments in Earthquake Resistant Design of Reinforced Concrete Buildings -- Chapter13. Earthquake Resistant Design of Masonry Buildings -- Chapter14. Developments in Seismic Analysis and Displacement Based Design -- Chapter15. A Template for the Earthquake Resistant Design Code -- Chapter16. System Identification in Structural Dynamics -- Chapter17. A Review of the Response Spectrum Method.
This edited volume is an up-to-date guide for students, policy makers and engineers on earthquake engineering, including methods and technologies for seismic hazard detection and mitigation. The book was written in honour of the late Professor Jai Krishna, who was a pioneer in teaching and research in the field of earthquake engineering in India during his decades-long work at the University of Roorkee (now the Indian Institute of Technology Roorkee). The book comprehensively covers the historical development of earthquake engineering in India, and uses this background knowledge to address the need for current advances in earthquake engineering, especially in developing countries. After discussing the history and growth of earthquake engineering in India from the past 50 years, the book addresses the present status of earthquake engineering in regards to the seismic resistant designs of bridges, buildings, railways, and other infrastructures. Specific topics include response spectrum superposition methods, design philosophy, system identification approaches, retaining walls, and shallow foundations. Readers will learn about developments in earthquake engineering over the past 50 years, and how new methods and technologies can be applied towards seismic risk and hazard identification and mitigation.
ISBN: 9783319768557
Standard No.: 10.1007/978-3-319-76855-7doiSubjects--Topical Terms:
555029
Natural disasters.
LC Class. No.: GB5000-5030
Dewey Class. No.: 551
Advances in Indian Earthquake Engineering and Seismology = Contributions in Honour of Jai Krishna /
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edited by M. L. Sharma, Manish Shrikhande, H. R. Wason.
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Part I: Engineering Seismology -- Chapter1. Engineering Seismology -- Chapter2. Developments in Seismological Instrumentation -- Chapter3. Strong Motion Instrumentation Programme in India. Chapter4. Strong Motion Studies -- Chapter5. New Regression Relations for Magnitude Conversion -- Chapter6. Tsunami Hazard Assessment -- Part 2: Geotechnical Earthquake Engineering -- Chapter7. Recent Developments in Liquefaction, stability analysis of retaining structures, shallow foundations and pile foundations -- Chapter8. Seismic Analysis and Design of Retaining Walls and Shallow Foundations -- Chapter9. Ground Improvement for Mitigating Liquefaction Hazard -- Chapter10. Recent Advances in Soil Dynamics -- Part 3: Structural Dynamics -- Chapter11. Developments in Earthquake Resistant Design of Bridges -- Chapter12. Developments in Earthquake Resistant Design of Reinforced Concrete Buildings -- Chapter13. Earthquake Resistant Design of Masonry Buildings -- Chapter14. Developments in Seismic Analysis and Displacement Based Design -- Chapter15. A Template for the Earthquake Resistant Design Code -- Chapter16. System Identification in Structural Dynamics -- Chapter17. A Review of the Response Spectrum Method.
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This edited volume is an up-to-date guide for students, policy makers and engineers on earthquake engineering, including methods and technologies for seismic hazard detection and mitigation. The book was written in honour of the late Professor Jai Krishna, who was a pioneer in teaching and research in the field of earthquake engineering in India during his decades-long work at the University of Roorkee (now the Indian Institute of Technology Roorkee). The book comprehensively covers the historical development of earthquake engineering in India, and uses this background knowledge to address the need for current advances in earthquake engineering, especially in developing countries. After discussing the history and growth of earthquake engineering in India from the past 50 years, the book addresses the present status of earthquake engineering in regards to the seismic resistant designs of bridges, buildings, railways, and other infrastructures. Specific topics include response spectrum superposition methods, design philosophy, system identification approaches, retaining walls, and shallow foundations. Readers will learn about developments in earthquake engineering over the past 50 years, and how new methods and technologies can be applied towards seismic risk and hazard identification and mitigation.
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