Preventing Earthquake Disasters The Grand Challenge in Earthquake Engineering

Preventing Earthquake Disasters  The Grand Challenge in Earthquake Engineering
Author: National Research Council (U.S.). Committee to Develop a Long-Term Research Agenda for the Network for Earthquake Engineering Simulation (NEES),Board on Infrastructure and the Constructed Environment
Publsiher: National Academy Press
Total Pages: 200
Release: 2003-11-21
Genre: Nature
ISBN: UOM:39015058715692

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The Network for Earthquake Engineering Simulation (NEES), administered by the National Science Foundation (NSF), is scheduled to become operational in 2004. These network sites will perform a range of experiments to test and validate complex computer models being developed to simulate the behavior of structures subjected to earthquakes. To assist in this effort, the NSF requested the National Research Council(NRC) to frame the major questions to be addressed by and to develop a long-term research agenda for NEES. Preventing Earthquake Disasters presents an overview of the grand challenge including six critical research problems making up that challenge. The report also provides an assessment of earthquake engineering research issues and the role of information technology in that research effort, and a research plan for NEES.

Grand Challenges in Earthquake Engineering Research

Grand Challenges in Earthquake Engineering Research
Author: National Research Council,Division on Earth and Life Studies,Board on Earth Sciences and Resources,Committee on Seismology and Geodynamics,Committee for the Workshop on Grand Challenges in Earthquake Engineering Researchâ¬"A Vision for NEES Experimental Facilities and Cyberinfrastructure Tools
Publsiher: National Academies Press
Total Pages: 102
Release: 2011-10-30
Genre: Science
ISBN: 9780309214520

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As geological threats become more imminent, society must make a major commitment to increase the resilience of its communities, infrastructure, and citizens. Recent earthquakes in Japan, New Zealand, Haiti, and Chile provide stark reminders of the devastating impact major earthquakes have on the lives and economic stability of millions of people worldwide. The events in Haiti continue to show that poor planning and governance lead to long-term chaos, while nations like Chile demonstrate steady recovery due to modern earthquake planning and proper construction and mitigation activities. At the request of the National Science Foundation, the National Research Council hosted a two-day workshop to give members of the community an opportunity to identify "Grand Challenges" for earthquake engineering research that are needed to achieve an earthquake resilient society, as well as to describe networks of earthquake engineering experimental capabilities and cyberinfrastructure tools that could continue to address ongoing areas of concern. Grand Challenges in Earthquake Engineering Research: A Community Workshop Report explores the priorities and problems regions face in reducing consequent damage and spurring technological preparedness advances. Over the course of the Grand Challenges in Earthquake Engineering Research workshop, 13 grand challenge problems emerged and were summarized in terms of five overarching themes including: community resilience framework, decision making, simulation, mitigation, and design tools. Participants suggested 14 experimental facilities and cyberinfrastructure tools that would be needed to carry out testing, observations, and simulations, and to analyze the results. The report also reviews progressive steps that have been made in research and development, and considers what factors will accelerate transformative solutions.

Grand Challenges in Earthquake Engineering Research

Grand Challenges in Earthquake Engineering Research
Author: Committee for the Workshop on Grand Challenges in Earthquake Engineering Researcha-"A Vision for Nees Experimental Facilities and Cyberinfrastructure Tools,Committee on Seismology and Geodynamics,Board on Earth Sciences and Resources,Division on Earth and Life Studies,National Research Council
Publsiher: Unknown
Total Pages: 102
Release: 2011-09-30
Genre: Electronic Book
ISBN: 0309384362

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As geological threats become more imminent, society must make a major commitment to increase the resilience of its communities, infrastructure, and citizens. Recent earthquakes in Japan, New Zealand, Haiti, and Chile provide stark reminders of the devastating impact major earthquakes have on the lives and economic stability of millions of people worldwide. The events in Haiti continue to show that poor planning and governance lead to long-term chaos, while nations like Chile demonstrate steady recovery due to modern earthquake planning and proper construction and mitigation activities. At the request of the National Science Foundation, the National Research Council hosted a two-day workshop to give members of the community an opportunity to identify "Grand Challenges" for earthquake engineering research that are needed to achieve an earthquake resilient society, as well as to describe networks of earthquake engineering experimental capabilities and cyberinfrastructure tools that could continue to address ongoing areas of concern. "Grand Challenges in Earthquake Engineering Research: A Community Workshop Report" explores the priorities and problems regions face in reducing consequent damage and spurring technological preparedness advances. Over the course of the "Grand Challenges in Earthquake Engineering Research" workshop, 13 grand challenge problems emerged and were summarized in terms of five overarching themes including: community resilience framework, decision making, simulation, mitigation, and design tools. Participants suggested 14 experimental facilities and cyberinfrastructure tools that would be needed to carry out testing, observations, and simulations, and to analyze the results. The report also reviews progressive steps that have been made in research and development, and considers what factors will accelerate transformative solutions.

Preventing Earthquake Disasters The Grand Challenge in Earthquake Engineering

Preventing Earthquake Disasters  The Grand Challenge in Earthquake Engineering
Author: National Research Council,Division on Engineering and Physical Sciences,Board on Infrastructure and the Constructed Environment,Committee to Develop a Long-Term Research Agenda for the Network for Earthquake Engineering Simulation (NEES)
Publsiher: National Academies Press
Total Pages: 193
Release: 2003-12-07
Genre: Science
ISBN: 9780309090643

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The Network for Earthquake Engineering Simulation (NEES), administered by the National Science Foundation (NSF), is scheduled to become operational in 2004. These network sites will perform a range of experiments to test and validate complex computer models being developed to simulate the behavior of structures subjected to earthquakes. To assist in this effort, the NSF requested the National Research Council(NRC) to frame the major questions to be addressed by and to develop a long-term research agenda for NEES. Preventing Earthquake Disasters presents an overview of the grand challenge including six critical research problems making up that challenge. The report also provides an assessment of earthquake engineering research issues and the role of information technology in that research effort, and a research plan for NEES.

Earthquake Protection

Earthquake Protection
Author: Andrew Coburn,Robin Spence
Publsiher: John Wiley & Sons
Total Pages: 451
Release: 2002-10-11
Genre: Technology & Engineering
ISBN: 9780470849231

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Since the publication of the successful first edition of Earthquake Protection there have been 110 lethal earthquakes, killing 130 000 people; there have also been significant developments in the field of earthquake risk management, particularly in the modelling and analysis of risk for insurance and financial services. Furthermore, major earthquake disasters, such as the 1994 Northridge earthquake in California, the 1995 Kobe earthquake in Japan and the 1999 Kocaeli earthquake in Turkey have occurred. The experience and knowledge gained through these events have improved our understanding of how to manage, mitigate and work towards the prevention of similar catastrophes. The 1990s were in fact the costliest decade on record in terms of disaster management due to such seismic events, placing unprecedented pressure on the insurance industry in particular, and changing its view of earthquake protection. Significantly revised and updated, this second edition continues to provide a comprehensive overview of how to reduce the impact of earthquakes on people and property, and implement best practice in managing the consequences of such disasters. It also includes significant coverage of the techniques of modelling earthquake catastrophe. Each chapter deals with a separate aspect of protection, and covers a wide range of economic and social conditions, drawing on the authors' considerable personal experience and with reference to real life examples. Key features include: Recent event coverage Modern developments in the theory and practice of planning and engineering loss estimation techniques, along with new engineering techniques such as microzonation and hazard-mapping Historic buildings experience An entirely new chapter on 'Earthquakes and Finance' This valuable book provides essential reading for earthquake and structural engineers and geoscientists, as well as insurers and loss prevention specialists, risk managers and assessors involved in managing earthquake risk, urban and regional planners, and emergency management agencies.

Earthquake Protection

Earthquake Protection
Author: Andrew W. Coburn,Andrew Coburn,Robin Spence
Publsiher: Unknown
Total Pages: 376
Release: 1992-12-29
Genre: Technology & Engineering
ISBN: UCSD:31822015291198

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An all-encompassing guide to environmental planning for earthquakes. Discusses prediction and preparation as well as emergency management and recovery. Examines how to enact and evaluate protection strategies. Considers site selection, seismic hazard assessment and improving earthquake resistance of buildings. Addresses loss estimation, risk and vulnerability analysis. Assesses possibilities for reducing earthquake disasters. Includes recommendations for further reading.

Earthquakes

Earthquakes
Author: Anonim
Publsiher: BoD – Books on Demand
Total Pages: 336
Release: 2018-10-31
Genre: Technology & Engineering
ISBN: 9781789239492

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An earthquake is the shaking of the surface of the Earth, resulting from the sudden release of energy in the Earth's lithosphere that creates seismic waves. Earthquakes can range in size from those that are so weak that they cannot be felt to those violent enough to toss people around and destroy the whole cities. At the Earth's surface, earthquakes manifest themselves by shaking and sometimes displacement of the ground. When the epicenter of a large earthquake is located offshore, the seabed may be displaced sufficiently to cause a tsunami. Earthquakes can also trigger landslides and occasionally volcanic activity. Earthquakes are caused not only by rupture of geological faults but also by other events such as volcanic activity, landslides, mine blasts, and nuclear tests. This book addresses the multidisciplinary topic of earthquake hazards and risk, one of the fastest growing, relevant, and applied fields of research and study practiced within the geosciences and environment. This book addresses principles, concepts, and paradigms of earthquakes, as well as operational terms, materials, tools, techniques, and methods including processes, procedures, and implications.

Recent Challenges and Advances in Geotechnical Earthquake Engineering

Recent Challenges and Advances in Geotechnical Earthquake Engineering
Author: Sitharam, T.G.,Vinod, J. S.
Publsiher: IGI Global
Total Pages: 315
Release: 2018-08-24
Genre: Technology & Engineering
ISBN: 9781522569497

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Solid design and craftsmanship are a necessity for structures and infrastructures that must stand up to natural disasters on a regular basis. Continuous research developments in the engineering field are imperative for sustaining buildings against the threat of earthquakes and other natural disasters. Recent Challenges and Advances in Geotechnical Earthquake Engineering provides innovative insights into the methods of structural engineering techniques, as well as disaster management strategies. The content within this publication represents the work of rock fracturing, hazard analysis, and seismic acceleration. It is a vital reference source for civil engineers, researchers, and academicians, and covers topics centered on improving a structure’s safety, stability, and resistance to seismic hazards.