Earthquake Hazards And Mitigation

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Engineering for Earthquake Disaster Mitigation

Author : Masanori Hamada
Publisher : Springer
Page : 346 pages
File Size : 42,8 Mb
Release : 2014-06-04
Category : Science
ISBN : 9784431548928

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Engineering for Earthquake Disaster Mitigation by Masanori Hamada Pdf

Earthquake and tsunami disasters have been increasing rapidly and globally in the last quarter-century. The purpose of this book is to provide essential knowledge and information on the mitigation of earthquakes and tsunamis for graduate students, young researchers, and geotechnical engineers. It begins by presenting recent cases of earthquakes that have occurred in the world, referring to tsunamis and soil liquefaction and how to cope with such disasters. The final chapter proposes strategies for disaster mitigation against in Japan earthquakes and tsunamis in the future.

Earthquake Hazards and Mitigation

Author : R. Ayothiraman,Hemanta Hazarika
Publisher : I. K. International Pvt Ltd
Page : 574 pages
File Size : 46,5 Mb
Release : 2008
Category : Science
ISBN : 9788189866778

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Earthquake Hazards and Mitigation by R. Ayothiraman,Hemanta Hazarika Pdf

discusses the new developments in the field of earthquake engineering and allied areas, " gives information about present state-of-the-art and current practices adopted globally in prediction and mitigation of earthquake hazards, " explores novel and innovative methods for prediction and mitigation of hazards considering the future earthquakes for building sustainable/ safe infrastructures and ensuring safety of community.

Earthquakes

Author : Taher Zouaghi
Publisher : BoD – Books on Demand
Page : 390 pages
File Size : 52,6 Mb
Release : 2017-02-01
Category : Science
ISBN : 9789535128854

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Earthquakes by Taher Zouaghi Pdf

This book is devoted to diverse aspects of earthquake researches, especially to new achievements in seismicity that involves geosciences, assessment, and mitigation. Chapters contain advanced materials of detailed engineering investigations, which can help more clearly appreciate, predict, and manage different earthquake processes. Different research themes for diverse areas in the world are developed here, highlighting new methods of studies that lead to new results and models, which could be helpful for the earthquake risk. The presented and developed themes mainly concern wave's characterization and decomposition, recent seismic activity, assessment-mitigation, and engineering techniques. The book provides the state of the art on recent progress in earthquake engineering and management. The obtained results show a scientific progress that has an international scope and, consequently, should open perspectives to other still unresolved interesting aspects.

Reducing earthquake losses

Author : Anonim
Publisher : DIANE Publishing
Page : 172 pages
File Size : 55,9 Mb
Release : 1995
Category : Electronic
ISBN : 9781428920378

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Reducing earthquake losses by Anonim Pdf

Earthquakes have caused massive death and destruction, and potentially damaging earthquakes are certain to occur in the future. Although earthquakes are uncontrollable, the losses they cause can be reduced by building structures that resist earthquake damage, matching land use to risk, developing emergency response plans, and other means. Since 1977, the federal government has had a research oriented program to reduce earthquake losses the National Earthquake Hazards Reduction Program (NEHRP). This program has made significant contributions toward improving our understanding of earthquakes and strategies to reduce their impact. Implementing action based on this understanding, however, has been quite difficult. This chapter provides an introduction to earthquakes: a sum mary of the earthquake hazard across the United States, a review of the types of losses earthquakes cause, a discussion of why earthquakes are a congressional concern, and an introduction to mitigation actions taken prior to earthquakes that can reduce losses when they occur. The federal policy response to date, NEHRP is then described and reviewed. Finally, specific policy options for improving federal efforts to reduce future earthquake losses are presented.

Earthquake Hazard Impact and Urban Planning

Author : Maria Bostenaru Dan,Iuliana Armas,Agostino Goretti
Publisher : Springer Science & Business Media
Page : 311 pages
File Size : 52,8 Mb
Release : 2014-02-11
Category : Nature
ISBN : 9789400779815

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Earthquake Hazard Impact and Urban Planning by Maria Bostenaru Dan,Iuliana Armas,Agostino Goretti Pdf

​The classical field dealing with earthquakes is called “earthquake engineering” and considered to be a branch of structural engineering. In projects dealing with strategies for earthquake risk mitigation, urban planning approaches are often neglected. Today interventions are needed on a city, rather than a building, scale. This work deals with the impact of earthquakes, including also a broader view on multihazards in urban areas. Uniquely among other works in the field, particular importance is given to urban planning issues, in conservation of heritage and emergency management. Multicriteria decision making and broad participation of those affected by disasters are included.

Improving Earthquake Mitigation

Author : Anonim
Publisher : Unknown
Page : 200 pages
File Size : 40,6 Mb
Release : 1993
Category : Earthquake engineering
ISBN : CHI:54206592

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Improving Earthquake Mitigation by Anonim Pdf

A Safer Future

Author : National Research Council,Division on Earth and Life Studies,Commission on Geosciences, Environment and Resources,U.S. National Committee for the Decade for Natural Disaster Reduction
Publisher : National Academies Press
Page : 85 pages
File Size : 47,6 Mb
Release : 1991-02-01
Category : Science
ISBN : 9780309045469

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A Safer Future by National Research Council,Division on Earth and Life Studies,Commission on Geosciences, Environment and Resources,U.S. National Committee for the Decade for Natural Disaster Reduction Pdf

Initial priorities for U.S. participation in the International Decade for Natural Disaster Reduction, declared by the United Nations, are contained in this volume. It focuses on seven issues: hazard and risk assessment; awareness and education; mitigation; preparedness for emergency response; recovery and reconstruction; prediction and warning; learning from disasters; and U.S. participation internationally. The committee presents its philosophy of calls for broad public and private participation to reduce the toll of disasters.

Earthquake Prediction and Hazard Mitigation Options for USGS and NSF Programs, September 15, 1976

Author : National Science Foundation (U.S.). Directorate for Research Applications
Publisher : Unknown
Page : 86 pages
File Size : 45,5 Mb
Release : 1976
Category : Earthquake prediction
ISBN : UIUC:30112104053522

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Earthquake Prediction and Hazard Mitigation Options for USGS and NSF Programs, September 15, 1976 by National Science Foundation (U.S.). Directorate for Research Applications Pdf

Reducing Earthquake Losses

Author : Anonim
Publisher : Unknown
Page : 180 pages
File Size : 45,6 Mb
Release : 1995
Category : Nature
ISBN : MINN:31951D01220354M

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Reducing Earthquake Losses by Anonim Pdf

Earthquakes

Author : Peter Folger
Publisher : CreateSpace
Page : 32 pages
File Size : 55,6 Mb
Release : 2012-04-29
Category : Electronic
ISBN : 147527744X

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Earthquakes by Peter Folger Pdf

The United States faces the possibility of large economic losses from earthquake-damaged buildings and infrastructure. The Federal Emergency Management Agency has estimated that earthquakes cost the United States, on average, over $5 billion per year. California, Oregon, and Washington account for nearly $4.1 billion (77%) of the U.S. total estimated average annualized loss. California alone accounts for most of the estimated annualized earthquake losses for the nation. A single large earthquake, however, can cause far more damage than the average annual estimate. The 1994 Northridge (CA) earthquake caused as much as $26 billion (in 2005 dollars) in damage and was one of the costliest natural disasters to strike the United States. One study of the damage caused by a hypothetical magnitude 7.8 earthquake along the San Andreas Fault in southern California projected as many as 1,800 fatalities and more than $200 billion in economic losses. An issue for the 112th Congress is whether existing federally supported programs aimed at reducing U.S. vulnerability to earthquakes are an adequate response to the earthquake hazard. Under the National Earthquake Hazards Reduction Program (NEHRP), four federal agencies have responsibility for long-term earthquake risk reduction: the U.S. Geological Survey (USGS), the National Science Foundation (NSF), the Federal Emergency Management Agency (FEMA), and the National Institute of Standards and Technology (NIST). They variously assess U.S. earthquake hazards, deliver notifications of seismic events, develop measures to reduce earthquake hazards, and conduct research to help reduce overall U.S. vulnerability to earthquakes. Congressional oversight of the NEHRP program might revisit how well the four agencies coordinate their activities to address the earthquake hazard. Better coordination was a concern that led to changes to the program in legislation enacted in 2004 (P.L. 108-360). P.L. 108-360 authorized appropriations for NEHRP through FY2009. Total funding enacted from reauthorization through FY2009 was $613.2 million, approximately 68% of the total amount of $902.4 million authorized by P.L. 108-360. Congress appropriated $131.2 million for NEHRP in FY2010, similar to FY2009 funding levels. Also, the American Recovery and Reinvestment Act (ARRA; P.L. 111-5) provided some additional funding for earthquake activities under NEHRP. What effect funding at the levels enacted through FY2010 under NEHRP has had on the U.S. capability to detect earthquakes and minimize losses after an earthquake occurs is difficult to assess. The effectiveness of the NEHRP program is a perennial issue for Congress: it is inherently difficult to capture precisely, in terms of dollars saved or fatalities prevented, the effectiveness of mitigation measures taken before an earthquake occurs. A major earthquake in a populated urban area within the United States would cause damage, and a question becomes how much damage would be prevented by mitigation strategies underpinned by the NEHRP program. Legislation was introduced during the 111th Congress (H.R. 3820) that would have made changes to the program and would have authorized appropriations totaling $906 million over five years for NEHRP. Ninety percent of the funding would have been designated for the USGS and NSF, and the remainder for FEMA and NIST. The bill passed the House but not the Senate. Similar legislation will likely be introduced in the 112th Congress.

Issues in Urban Earthquake Risk

Author : B.E. Tucker,Mustafa Özder Erdik,Christina N. Hwang
Publisher : Springer Science & Business Media
Page : 338 pages
File Size : 42,6 Mb
Release : 2013-03-09
Category : Science
ISBN : 9789401583381

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Issues in Urban Earthquake Risk by B.E. Tucker,Mustafa Özder Erdik,Christina N. Hwang Pdf

Urban seismic risk is growing worldwide and is, increasingly, a problem of developing countries. In 1950, one in four of the people living in the world's fifty largest cities was earthquake-threatened, while in the year 2000, about one in two will be. Further, ofthose people living in earthquake-threatened cities in 1950, about two in three were located in developing countries, while in the year 2000, about nine in ten will be. Unless urban seismic safety is improved, particularly in developing countries, future earthquakes will have ever more disastrous social and economic consequences. In July 1992, an international meeting was organized with the purpose of examining one means ofimproving worldwide urban safety. Entitled "Uses ofEarthquake Damage Scenarios for Cities of the 21st Century," this meeting was held in conjunction with the Tenth World Conference ofEarthquake Engineering, in Madrid, Spain. An earthquake damage scenario (EDS) is adescription of the consequences to an urban area of a large, but expectable earthquake on the critical facilities of that area. In Californian and Japanese cities, EDSes have been used for several decades, mainly for the needs of emergency response officials. The Madrid meeting examined uses of this technique for other purposes and in other, less developed countries. As a result of this meeting, it appeared that EDSes bad significant potential to improve urban seismic safety worldwide.

Urban Disaster Mitigation: The Role of Engineering and Technology

Author : F.Y. Cheng,M.-S. Sheu
Publisher : Elsevier
Page : 320 pages
File Size : 45,8 Mb
Release : 1995-07-21
Category : Technology & Engineering
ISBN : 0080543464

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Urban Disaster Mitigation: The Role of Engineering and Technology by F.Y. Cheng,M.-S. Sheu Pdf

Great loss of human life, structural damage, and social and economic upheaval occur repeatedly due to such natural hazards as earthquakes, typhoons, hurricanes, landslides, floods and tsunamis. Both the US and Taiwan, along with many other countries, have a history of such occurrences and a common need to reduce their effects. This volume includes papers from the fourth symposium workshop, held jointly between the US and Taiwan to discuss research and its application to multiple hazard mitigation. The workshop, Urban Disaster Mitigation, The Role of Engineering and Technology, discussed lessons learned from recent natural disasters; assessed results of Taiwan's multiple hazards research program and potential application to the US; and proposed further studies on subjects of mutual concern. Topics include recent scientific findings obtained in various natural hazard areas and assessment of actual and potential damage from earthquakes, floods and landslides. Of particular importance are measures that can be taken to mitigate these hazards ranging from use of new algorithms for structural engineering to warning systems for a given region. At a time when natural disasters are widespread, engineers play a key role. Construction methods and building codes are changing; current knowledge shapes the direction of these changes. The research results presented in these proceedings will benefit both the academic and practicing communities around the world, strengthening the relationship between these two important parties.