Hyogo-Ken Nanbu Earthquake of January 17, 1995

Hyogo-Ken Nanbu Earthquake of January 17, 1995 PDF Author: Committee on Ports and Harbors Lifelines
Publisher: ASCE Publications
ISBN: 9780784474037
Category : Technology & Engineering
Languages : en
Pages : 120

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Book Description
Prepared by the Committee on Ports and Harbors Lifelines of the Technical Council on Lifeline Earthquake Engineering of ASCE. Hyogo-Ken Nanbu Earthquake of January 17, 1995: A Post-Earthquake Reconnaissance of Port Facilities describesØthe seismic performance of ports in the Osaka Bay region of Japan following the Hyogo-Ken Nanbu earthquake. A team of investigators observed and evaluated the seismic performance of the port facilities and then held numerous data-gathering meetings with representatives from relevant port authorities, engineering consulting firms, construction companies, universities, and private research organizations in Japan. The investigation was carried out over a 10-day period (February 18-27, 1995) and focused primarily on the Port of Kobe, the Port of Osaka and, to a lesser degree, the Kansai Airport. This first-hand documentation of perishable data will enhance future engineering and research work at these and other ports around the world.

Hyogo-Ken Nanbu Earthquake of January 17, 1995

Hyogo-Ken Nanbu Earthquake of January 17, 1995 PDF Author: Committee on Ports and Harbors Lifelines
Publisher: ASCE Publications
ISBN: 9780784474037
Category : Technology & Engineering
Languages : en
Pages : 120

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Book Description
Prepared by the Committee on Ports and Harbors Lifelines of the Technical Council on Lifeline Earthquake Engineering of ASCE. Hyogo-Ken Nanbu Earthquake of January 17, 1995: A Post-Earthquake Reconnaissance of Port Facilities describesØthe seismic performance of ports in the Osaka Bay region of Japan following the Hyogo-Ken Nanbu earthquake. A team of investigators observed and evaluated the seismic performance of the port facilities and then held numerous data-gathering meetings with representatives from relevant port authorities, engineering consulting firms, construction companies, universities, and private research organizations in Japan. The investigation was carried out over a 10-day period (February 18-27, 1995) and focused primarily on the Port of Kobe, the Port of Osaka and, to a lesser degree, the Kansai Airport. This first-hand documentation of perishable data will enhance future engineering and research work at these and other ports around the world.

Seismological and Engineering Aspects of the 1995 Hyogoken-Nanbu (Kobe) Earthquake

Seismological and Engineering Aspects of the 1995 Hyogoken-Nanbu (Kobe) Earthquake PDF Author:
Publisher:
ISBN:
Category : Accelerograms
Languages : en
Pages : 262

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Book Description


Earthquake Geotechnical Case Histories for Performance-Based Design

Earthquake Geotechnical Case Histories for Performance-Based Design PDF Author: Takaji Kokusho
Publisher: CRC Press
ISBN: 1439856583
Category : Technology & Engineering
Languages : en
Pages : 466

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Book Description
Earthquake Geotechnical Case Histories for Performance-Based Design is a collection of 26 case histories, each study containing well-instrumented geotechnical and earthquake data. The book is intended to serve as a reference work, since it contains a common scale to develop and implement design methodologies and numerical analyses, so that their re

Geotechnical Reconnaissance of the Effects of the January 17, 1995, Hyogoken-Nanbu Earthquake, Japan

Geotechnical Reconnaissance of the Effects of the January 17, 1995, Hyogoken-Nanbu Earthquake, Japan PDF Author: Koichi Akai
Publisher: DIANE Publishing
ISBN: 0788125389
Category :
Languages : en
Pages : 168

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Book Description
The Jan. 17, 1995, Hyogoken-Nanbu Earthquake was one of the worst disasters to hit Japan in almost half a century. It has been compared in its impact to the great Kanto (Tokyo) Earthquake of 1923. The Kobe-Osaka region held many similarities in its geologic and tectonic setting to many areas along the West Coast, and possibly, other areas of the U.S. A geotechnical reconnaissance to identify the relevant problems and issues was organized. This report provides a timely, first-hand overview of the type and extent of the geotechnical aspects of the damage.

STESSA 2000: Behaviour of Steel Structures in Seismic Areas

STESSA 2000: Behaviour of Steel Structures in Seismic Areas PDF Author: Federico Mazzolani
Publisher: CRC Press
ISBN: 1000443736
Category : Technology & Engineering
Languages : en
Pages : 782

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Book Description
This is a review of developments in the behaviour and design of steel structures in seismic areas. The proceedings look at the analytical and experimental research on the seismic response of steel structures, and cover topics such as global behaviour and codification, design and application.

Earthquake Proof Design and Active Faults

Earthquake Proof Design and Active Faults PDF Author: Y. Kanaori
Publisher: Elsevier
ISBN: 0080530664
Category : Science
Languages : en
Pages : 283

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Book Description
On 17th January 1995 an inland earthquake of 7.2 magnitude occurred under Kobe city in central Japan. More than 5,500 people lost their lives. There was immense and serious damage to buildings. Researchers and engineers were shocked and astonished by the extent of the devastation and loss of life. Ground motions, generated by the event were far greater than the seismic standard for earthquake-proof designs in Japan. Recent academic progress in the fields of geology and geophysics, which would help to reduce the severity of seismic disasters, has not been sufficiently applied to the development of earthquake-proof designs. This book contains 13 original and innovative papersof interdisciplinary study spanning earthquake-proof technology and active fault science (seven of the papers cover topics concerning the 1995 Kobe earthquake).

Rock Dynamics

Rock Dynamics PDF Author: Omer Aydan
Publisher: CRC Press
ISBN: 1315391295
Category : Science
Languages : en
Pages : 462

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Book Description
Rock dynamics has become one of the most important topics in the field of rock mechanics and rock engineering. The spectrum of rock dynamics is very wide and it includes the failure of rocks, rock masses and rock engineering structures such as rockbursting, spalling, popping, collapse, toppling, sliding, blasting, non-destructive testing, geophysical explorations, science and engineering of rocks and impacts. The book specifically covers fundamentals of rock dynamics, constitutive models, numerical analysis techniques, dynamic testing procedures, the multi-parameter responses and motions of rocks during fracturing or slippage in laboratory experiments, earthquakes and their strong motion characteristics and their effect on various rock structures such as foundations, underground structures, slopes, dynamic simulation of loading and excavation, blasting and its positive utilization in rock engineering, the phenomenon of rockburst in rock excavations, non-destructive testing of rockbolts and rock anchors and impacts by meteors or projectiles. The main goal of this book is to present a unified and complete treatise on Rock Dynamics and to represent a milestone in advancing the knowledge in this field and in leading to new techniques for experiments, analytical and numerical modelling as well as monitoring of dynamics of rocks and rock engineering structures.

Fundamentals of Earthquake Engineering

Fundamentals of Earthquake Engineering PDF Author: Amr S. Elnashai
Publisher: John Wiley & Sons
ISBN: 1118700465
Category : Science
Languages : en
Pages : 496

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Book Description
Fundamentals of Earthquake Engineering: From Source to Fragility, Second Edition combines aspects of engineering seismology, structural and geotechnical earthquake engineering to assemble the vital components required for a deep understanding of response of structures to earthquake ground motion, from the seismic source to the evaluation of actions and deformation required for design, and culminating with probabilistic fragility analysis that applies to individual as well as groups of buildings. Basic concepts for accounting for the effects of soil-structure interaction effects in seismic design and assessment are also provided in this second edition. The nature of earthquake risk assessment is inherently multi-disciplinary. Whereas this book addresses only structural safety assessment and design, the problem is cast in its appropriate context by relating structural damage states to societal consequences and expectations, through the fundamental response quantities of stiffness, strength and ductility. This new edition includes material on the nature of earthquake sources and mechanisms, various methods for the characterization of earthquake input motion, effects of soil-structure interaction, damage observed in reconnaissance missions, modeling of structures for the purposes of response simulation, definition of performance limit states, fragility relationships derivation, features and effects of underlying soil, structural and architectural systems for optimal seismic response, and action and deformation quantities suitable for design. Key features: Unified and novel approach: from source to fragility Clear conceptual framework for structural response analysis, earthquake input characterization, modelling of soil-structure interaction and derivation of fragility functions Theory and relevant practical applications are merged within each chapter Contains a new chapter on the derivation of fragility Accompanied by a website containing illustrative slides, problems with solutions and worked-through examples Fundamentals of Earthquake Engineering: From Source to Fragility, Second Edition is designed to support graduate teaching and learning, introduce practising structural and geotechnical engineers to earthquake analysis and design problems, as well as being a reference book for further studies.

Architectural Glass to Resist Seismic and Extreme Climatic Events

Architectural Glass to Resist Seismic and Extreme Climatic Events PDF Author: Richard A. Behr
Publisher: Elsevier
ISBN: 1845696859
Category : Technology & Engineering
Languages : en
Pages : 273

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Book Description
Glass is a popular cladding material for modern buildings. The trend for steel-framed, glass-clad buildings instead of those using traditional materials such as brick and concrete has inherent problems. These include, for example, the performance of architectural glass in extreme climatic events such as windstorms and heavy snow loads and also during earthquakes. This book reviews the state-of-the-art in glass and glazing technology to resist failure due to these natural events.Building code seismic requirements for architectural glass in the United States are considered first of all, followed by a chapter on glazing and curtain wall systems to resist earthquakes. The next two chapters discuss snow loads on building envelopes and glazing systems, and types and design of glazing systems to resist snow loads. Wind pressures and the impact of wind-borne debris are then considered in the next group of chapters which also review special types of glazing systems to resist windstorms. A final chapter reviews test methods for the performance of glazing systems during earthquakes and extreme climatic events.With its distinguished editor and team of contributors, Architectural glass to resist seismic and extreme climatic events is an essential resource for architects, structural, civil and architectural engineers, researchers and those involved in designing and specifying building glazing and cladding materials in areas where severe windstorms, snow and earthquakes are a threat. - Considers the state of the art in glass and glazing technology to resist failure due to extreme climatic events - Reviews specific building techniques and test methods to enhance glazing performance during snow storms, wind storms and earthquakes

Seismic Design and Practice into the Next Century

Seismic Design and Practice into the Next Century PDF Author: Edmund Booth
Publisher: Routledge
ISBN: 1351417231
Category : Technology & Engineering
Languages : en
Pages : 548

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Book Description
The papers, from 18 countries in Europe and elsewhere, contain discussions of quite radical innovations in material technology, design philosophy, experimental techniques and analytical approaches that will affect seismic design practice into the next century. Papers are organised into 9 sections: Ground motion and seismic hazard studies; Seismic design of foundations; Seismic design of steel, concrete and masonry buildings; Seismic design of offshore, nuclear and petrochemical installations; Seismic design of bridges, dock and power station structures; Repair and strengthening of bridges and buildings; Active and passive methods of seismic control; Dynamic testing methods; Seismic codes of practice. The proceedings will provide essential material for all those from both industrial and research organisations needing to keep in touch with the state-of-the-art in earthquake engineering and related earch sciences.